* test(#4384): failing-first regression rows for the macOS long-base todo-cap failure The 240-char pending-todo bullet cap must be deterministic w.r.t. where the repo is checked out. Deterministic long-base-path fixtures (a single 110-char segment, no real macOS dependency) reproduce next's own macos shard 3/3 failure (run 34038716700) on every OS: with an absolute link the bullet exceeds the cap and the documented needs-first truncation drops the 'Needs <solution>' clause. Rows cover the determinism property (byte-identical bullets under short and long bases), the CLI surface, relative-path stability, legacy no-projectRoot behavior, drop-order preservation, and adversarial edges (outside-root, path===root, non-string path). * fix(#4384): render the pending-todo bullet link repo-relative renderPendingTodosMarkdown gains an optional projectRoot; when given and the todo's path is absolute, the bullet's [todo file](…) target becomes toPosixPath(path.relative(projectRoot, path)) — the idiom already used for project_exists. cmdInitTodos passes cwd. The JSON todos[].path field stays absolute (#2376). Only the rendered display link changes: embedding the machine-variable absolute base let macOS's /private/var/folders/… temp paths consume the 240-char budget and drop the 'Needs' clause on long-path machines only — next's own macos-latest shard 3/3 went red on exactly this (run 34038716700), Linux's short /tmp passed. The 240-char whole-bullet cap and the needs→title→area drop order are unchanged; this matches PR #4384's own canonical example, docs, and unit tests, which all show repo-relative links. Docs updated at all three surfaces that describe the bullet (COMMANDS.md, templates/state.md, reference/state-md.md — the last was still pre-#4384 'count and reference' prose). Fixes the macOS regression introduced by #4384; next is red on its own CI. * test(#4384): fix substring false positive in the outside-root regression row The ../-form relative link legitimately contains the absolute path as a substring, so !line.includes(absolutePath) fired on correct output (caught by the first remote verify run, linux-node24 44018/44019). Assert the property itself instead: extract the link target and require it to be non-absolute and not equal to the absolute path. * chore(#4398): backfill PR number in changeset --------- Co-authored-by: sim <sim@local>
138 KiB
GSD Core Command Reference
Command reference for GSD Core — syntax, flags, options, and examples for every stable command. For feature details see Feature Reference; for workflow walkthroughs see User Guide; for the docs index see README.
Command Syntax
- Claude Code / Copilot / OpenCode / Kilo:
/gsd-command-name [args](hyphen form) - Codex:
$gsd-command-name [args]
The hyphen and colon forms are runtime-specific spellings of the same command. Whichever runtime you're on, the installer writes the correct form into your runtime's command directory.
Skill Runtime Behavior (Claude Code)
Heavy workflow skills (/gsd-plan-phase, /gsd-execute-phase, /gsd-autonomous) declare effort: max, signalling maximum token budget to the runtime. These skills are spawning orchestrators — they must run at top level so they retain the Agent tool needed to spawn subagents. They do not carry context: fork (see #921).
Quick-status skills (/gsd-progress, /gsd-stats) declare effort: low, directing the runtime to use a minimal token budget for fast reads.
These fields are Claude Code–specific frontmatter. On runtimes that do not recognise them (Antigravity, Codex, Cursor, etc.) the fields are silently ignored — existing behaviour is unchanged.
Namespace Meta-Skills
Six namespace routers ship as the first-stage entry points in v1.40. They keep the eager skill-listing token cost low (~120 tokens for 6 routers vs ~2,150 for a flat 86-skill listing) while the full surface remains directly invocable. The model selects a namespace, then routes to the concrete sub-skill. See #2792.
| Command | Routes to |
|---|---|
/gsd-workflow |
Phase pipeline — discuss / plan / execute / verify / phase / progress / next |
/gsd-project |
Project lifecycle — milestones, audits, summary |
/gsd-quality |
Quality gates — code review, debug, audit, security, eval, ui |
/gsd-context |
Codebase intelligence — map, graphify, docs, learnings |
/gsd-manage |
Management — config, workspace, workstreams, thread, update, ship, inbox |
/gsd-ideate |
Exploration & capture — explore, sketch, spike, spec, capture |
The namespace skills are additive — every existing concrete command (e.g. /gsd-plan-phase, /gsd-code-review --fix) is still invocable directly.
Core Workflow Commands
/gsd-new-project
Initialize a new project with deep context gathering.
| Flag | Description |
|---|---|
--auto @file.md |
Auto-extract from document, skip interactive questions |
Prerequisites: No existing .planning/PROJECT.md
Produces: PROJECT.md, REQUIREMENTS.md, ROADMAP.md, STATE.md, config.json, research/, CLAUDE.md
/gsd-new-project # Interactive mode
/gsd-new-project --auto @prd.md # Auto-extract from PRD
/gsd-onboard
Guide an existing codebase through first-time GSD onboarding. The command checks repo state, routes you through codebase mapping, optional docs ingest, project initialization, and creates an onboarding summary once planning exists.
| Flag | Description |
|---|---|
--fast |
Prefer the lightweight /gsd-map-codebase --fast mapping handoff; a complete map is still required before /gsd-new-project |
--text |
Use numbered plain-text gates instead of TUI menus |
Prerequisites: Existing repo or planning docs. For empty greenfield projects, use /gsd-new-project.
Produces: .planning/codebase/ via map-codebase, .planning/ via new-project or ingest-docs, and .planning/onboarding/SUMMARY.md after project setup.
/gsd-onboard # Guided brownfield onboarding
/gsd-onboard --fast # Use lightweight codebase mapping first, then complete the map before project setup
/gsd-workspace
Manage GSD workspaces — create, list, or remove isolated workspace environments with repo copies and independent .planning/ directories.
| Flag | Description |
|---|---|
--new |
Create a new workspace (use with --name, --repos, etc.) |
--list |
List active GSD workspaces and their status |
--remove <name> |
Remove a workspace and clean up git worktrees |
--name <name> |
Workspace name (used with --new) |
--repos repo1,repo2 |
Comma-separated repo paths or names (used with --new) |
--path /target |
Target directory (default: ~/gsd-workspaces/<name>) |
--strategy worktree|clone |
Copy strategy (default: worktree) |
--branch <name> |
Branch to checkout (default: workspace/<name>) |
--auto |
Skip interactive questions |
Use cases:
- Multi-repo: work on a subset of repos with isolated GSD state
- Feature isolation:
--repos .creates a worktree of the current repo
Produces: WORKSPACE.md, .planning/, repo copies (worktrees or clones)
/gsd-workspace --new --name feature-b --repos hr-ui,ZeymoAPI
/gsd-workspace --new --name feature-b --repos . --strategy worktree # Same-repo isolation
/gsd-workspace --list
/gsd-workspace --remove feature-b
/gsd-spec-phase
Clarify WHAT a phase delivers through Socratic questioning with quantitative ambiguity scoring, then probe for omitted edges. Produces SPEC.md before discuss-phase.
| Argument | Required | Description |
|---|---|---|
N |
Yes | Phase number |
| Flag | Description |
|---|---|
--auto |
Skip interactive questions; Claude selects recommended defaults and writes SPEC.md |
--text |
Use plain-text numbered lists instead of TUI menus (required for /rc remote sessions) |
Position in workflow: spec-phase → discuss-phase → plan-phase → execute-phase → verify
Edge Coverage (Step 5.5): After the ambiguity gate passes, spec-phase runs an edge-completeness probe over each requirement. It raises only applicable categories from a closed 8-category taxonomy (boundary, adjacency, empty, encoding, ordering, precision, idempotency, concurrency), proposes one concrete candidate edge per category, and records each as covered / dismissed (reason required) / backstop / unresolved in a ## Edge Coverage SPEC section. Unresolved applicable edges soft-gate the spec (Resolve / Write-anyway-flagged / Keep-probing); covered and backstop edges are later lifted into plan-phase must_haves. Under --auto the probe never auto-dismisses — it auto-covers where a defensible acceptance criterion exists, otherwise auto-backstops.
Prohibition Coverage (Step 5.6): After the edge probe, spec-phase runs a prohibition-completeness probe — a two-stage prose pass (adversarial recall → precision classifier) that surfaces the unwritten must-NOT constraints (values/safety/ethics) the spec never forbids. Each is resolved to resolved (a NEGATIVE acceptance criterion, carrying a test or judgment verification tier) / dismissed (reason required) / unresolved, recorded in a ## Prohibitions (must-NOT) SPEC section. Resolved prohibitions are lifted into plan-phase must_haves.prohibitions; judgment-tier items soft-gate at verify time (never silent, never hard-halt) and unwired test-tier items fail closed. Under --auto the probe never auto-dismisses; canon-bound concerns (OWASP / GDPR / fairness) are referred to /gsd-secure-phase.
Prerequisites: .planning/ROADMAP.md exists
Produces: {phase}-SPEC.md (with a ## Edge Coverage section)
/gsd-spec-phase 1 # Interactive spec + edge probe for phase 1
/gsd-spec-phase 3 --auto # Auto-select defaults; never auto-dismisses an edge
/gsd-spec-phase 2 --text # Plain-text menus for remote sessions
/gsd-discuss-phase
Gather phase context through adaptive questioning before planning.
| Argument | Required | Description |
|---|---|---|
N |
No | Phase number (defaults to current phase) |
| Flag | Description |
|---|---|
--all |
Skip area selection — discuss all gray areas interactively (no auto-advance) |
--auto |
Auto-select recommended defaults for all questions |
--batch |
Group questions for batch intake instead of one-by-one |
--analyze |
Add trade-off analysis during discussion |
--power |
File-based bulk question answering from a prepared answers file |
--assumptions |
Surface Claude's implementation assumptions about the phase without an interactive session |
Prerequisites: .planning/ROADMAP.md exists
Produces: {phase}-CONTEXT.md, {phase}-DISCUSSION-LOG.md (audit trail)
/gsd-discuss-phase 1 # Interactive discussion for phase 1
/gsd-discuss-phase 1 --all # Discuss all gray areas without selection step
/gsd-discuss-phase 3 --auto # Auto-select defaults for phase 3
/gsd-discuss-phase --batch # Batch mode for current phase
/gsd-discuss-phase 2 --analyze # Discussion with trade-off analysis
/gsd-discuss-phase 1 --power # Bulk answers from file
/gsd-discuss-phase 3 --assumptions # Surface Claude's assumptions before planning
/gsd-ui-phase
Generate UI design contract for frontend phases.
| Argument | Required | Description |
|---|---|---|
N |
No | Phase number (defaults to current phase) |
Prerequisites: .planning/ROADMAP.md exists, phase has frontend/UI work
Produces: {phase}-UI-SPEC.md
/gsd-ui-phase 2 # Design contract for phase 2
/gsd-plan-phase
Research, plan, and verify a phase.
| Argument | Required | Description |
|---|---|---|
N |
No | Phase number (if omitted, the orchestrating workflow reads ROADMAP.md and targets the next unplanned phase — not a gsd-tools.cjs CLI feature) |
| Flag | Description |
|---|---|
--auto |
Skip interactive confirmations |
--research |
Force re-research even if RESEARCH.md exists |
--skip-research |
Skip domain research step |
--research-phase <N> |
Research-only mode: spawn researcher for phase <N>, write RESEARCH.md, exit before planner. Supersedes the deleted standalone research command (#3042). |
--view |
Research-only modifier: when used with --research-phase, print existing RESEARCH.md to stdout and exit (no spawn). |
--gaps |
Gap closure mode (reads VERIFICATION.md, skips research) |
--skip-verify |
Skip plan checker verification loop |
--prd <file> |
Use a PRD file instead of discuss-phase for context |
--ingest <path-or-glob> |
Use ADR file(s) instead of discuss-phase for context synthesis |
--ingest-format <auto|nygard|madr|narrative> |
Optional ADR parser format override for --ingest |
--reviews |
Replan with cross-AI review feedback from REVIEWS.md |
--bounce |
Run external plan bounce validation after planning (uses workflow.plan_bounce_script) |
--skip-bounce |
Skip plan bounce even if enabled in config |
--mvp |
MVP enrichment on top of the default tracer-first ordering — frames the phase goal as a user story and, on Phase 1 of a new project with no prior phase summaries, also emits SKELETON.md (Walking Skeleton). Vertical slicing is now the default (see --no-tracer); --mvp no longer turns it on. Can be persisted on a phase via **Mode:** mvp in ROADMAP.md, which applies --mvp automatically without the flag. |
--no-tracer |
Opt out of the default tracer-first decomposition and plan horizontal layers (the legacy default). By default every plan leads with one production-quality end-to-end tracer slice that the executor verifies before any expansion task. |
--no-reversibility-gates |
Suppress the human checkpoint that a one-way-door decision normally earns, for runs you intend to leave unattended. By default a decision rated one-way — undoing it needs a data migration, breaks a published contract, or is impossible — gets a checkpoint:decision inserted before the task that implements it. Ratings are still recorded on tasks and costly decisions are still flagged, so the flag changes what stops the run, not what the plan remembers. |
--tdd |
TDD mode — planner applies type: tdd to eligible behavior-adding tasks so each begins with a failing test. Composable with --mvp: --mvp --tdd produces vertical slices where every behavior-adding task starts red-green. The leading tracer task also starts red under --tdd. |
--granularity <coarse|standard|fine> |
Override the planning granularity for this invocation, ignoring config. Valid values: coarse, standard, fine. Takes precedence over granularities.planning, top-level granularity, and planning.granularity config. |
Smart-zone estimate report (#2631). Every generated PLAN.md carries an optional estimate block ({tokens, tasks, confidence}). During the plan-check pass, gsd-plan-checker runs each plan's estimate.tokens through estimate-check against the configurable workflow.smart_zone_tokens budget (default 100000) and reports the result; a plan above budget gets a concrete split recommendation. The report is advisory and never blocks planning, and it is skipped with --skip-verify since it runs inside the verification pass. confidence is derived from how many completed phases carry recorded actuals — low means fewer than three, so the figure is not yet calibrated for your project. See ADR-2629.
Prerequisites: .planning/ROADMAP.md exists
Produces: {phase}-RESEARCH.md, {phase}-{N}-PLAN.md, {phase}-VALIDATION.md; {phase}/SKELETON.md when Walking Skeleton mode fires
Research-only mode (--research-phase <N>):
- No modifier: when RESEARCH.md already exists, auto-uses it — emits a one-line notice and exits, no prompt.
- With
--research: force-refresh — re-spawn researcher unconditionally, no prompt. - With
--view: print existing RESEARCH.md to stdout, no spawn. Errors if RESEARCH.md missing.
Package Legitimacy Gate (v1.42.1):
When the researcher recommends external packages, it runs gsd-tools query package-legitimacy check --ecosystem <npm|pypi|crates> <pkg> on each one and writes a ## Package Legitimacy Audit table to RESEARCH.md recording Registry, Age, Downloads, Source Repo, and legitimacy verdict. Verdicts are computed from live registry APIs (npm, PyPI, crates.io):
[SLOP]— package removed from RESEARCH.md entirely; never reaches the planner[SUS]— package flagged; planner insertscheckpoint:human-verifybefore the install task[OK]— package approved; no checkpoint added
Packages sourced from WebSearch are tagged [ASSUMED] (not [VERIFIED]) and treated the same as [SUS] — they get a human checkpoint before install. A failed registry lookup degrades to [SUS] rather than throwing, so it is gated, not silently accepted. slopcheck is an optional escalate-only adapter that no shipped configuration wires; it is not required for the gate to function.
See Package Legitimacy Gate in the User Guide for the full checkpoint format, verdict table, and troubleshooting.
In-repo value citation:
For any in-repo discrete value the researcher reports — an enum, a schema or type union, an error code, a status constant, or a filesystem path — a [VERIFIED: …] tag requires that it opened the source-of-truth file with Read during the run and cited the path and line range ([VERIFIED: src/types/order.ts:14-22]). The values are quoted verbatim in RESEARCH.md beside the claim, and any value used in a code example must also appear in that quote; anything else stays [ASSUMED]. A codebase grep, training memory, or a web search do not earn the tag on their own. This stops a plausible-but-drifted enum from reaching PLAN.md — where the planner lifts it into the plan's <interfaces> context block and the executor trusts it as ground truth — and surfacing only as a mid-execution deviation at typecheck.
Absent-evidence citation:
A compatibility claim the researcher reports — "this library does not support that runtime version" — earns a [VERIFIED: …] tag only from positive evidence. Metadata that is simply missing (no python_requires, no engines field, no per-version classifier, no changelog entry, no matching row in a support matrix) does not qualify, however authoritative the registry or documentation consulted: an absence says nothing about the version you are ruling out and nothing about the version you are standardizing on, so the same evidence would "prove" both. The rule keys on the evidence rather than the wording, so rephrasing the claim positively ("supports only up to 3.13") changes nothing, and an absence is equally not evidence that the version is supported. A present constraint is the opposite case and still earns the tag — requires-python = ">=3.9,<3.12" is a declared exclusion — as does documentation stating the incompatibility affirmatively, which is [CITED: …]. What separates the two is whether the declaration bounds every value or only the ones it names: an explicit range or upper bound speaks about all versions, while an enumerated allow-list that stops short of the target (classifiers running :: 3.9 through :: 3.13 with no :: 3.14) stays silent about the target and remains a governed absence unless the project says the list is exhaustive. See How-to: verify a dependency-compatibility claim. The one route from an absence to [VERIFIED] is a positive falsification attempt: run it against the real target and paste the failing output. Everything short of that stays [ASSUMED], which routes the claim through the usual confirmation checkpoint before it can lock a decision in CONTEXT.md — so a probe you cannot run in this environment costs a checkpoint, not a blocked plan.
/gsd-plan-phase 1 # Research + plan + verify phase 1
/gsd-plan-phase 3 --skip-research # Plan without research (familiar domain)
/gsd-plan-phase --auto # Non-interactive planning
/gsd-plan-phase 1 --bounce # Plan + external bounce validation
/gsd-plan-phase 2 --ingest docs/adr/0010.md # ADR express path for context synthesis
/gsd-plan-phase 2 --ingest 'docs/adr/00*.md' --ingest-format auto
/gsd-plan-phase --research-phase 4 # Research only on phase 4 (auto-uses existing RESEARCH.md, no prompt)
/gsd-plan-phase --research-phase 4 --view # Print existing RESEARCH.md, no spawn
/gsd-plan-phase --research-phase 4 --research # Force-refresh research, no prompt
/gsd-plan-phase 1 --mvp # Vertical-slice plan for phase 1
/gsd-plan-phase 1 --mvp --tdd # Vertical slices + failing test per behavior-adding task
/gsd-plan-review-convergence
Cross-AI plan convergence loop — replan with review feedback until no HIGH concerns remain and no actionable MEDIUM/LOW findings remain outside PLAN.md. Runs plan-phase → review → replan → re-review cycles (max 3 cycles by default). Plan-phase runs inline (bare Skill at depth 0 so it can spawn gsd-planner/gsd-plan-checker at depth 1); only gsd-review runs in an isolated Agent. Orchestrator handles loop control, unresolved review counting (HIGH + actionable non-HIGH), stall detection, and escalation.
| Argument / Flag | Required | Description |
|---|---|---|
N |
Yes | Phase number to plan and review |
| Reviewer flags | No | Pass through every reviewer lane flag: --gemini, --claude, --codex, --coderabbit, --opencode, --qwen, --cursor, --agy / --antigravity, --ollama, --lm-studio, --llama-cpp, --kimi-code |
--all |
No | Run every configured reviewer. Lanes are dispatched sequentially by default; set review.parallel_lanes to true to dispatch them concurrently within a single review pass |
--max-cycles N |
No | Override cycle cap (default 3) |
Exit behavior: Loop exits when current_high and current_actionable hit zero; open ## Plan-Revision Conflicts entries in REVIEWS.md must also be zero. Stall detection warns when the total unresolved review count is not decreasing across cycles. At --max-cycles, the escalation gate offers proceed-or-review-manually for HIGH or actionable non-HIGH concerns, but only manual review when a plan-revision conflict is still open — "Proceed anyway" is never offered over an unresolved conflict.
Consensus gate (2+ reviewers only). When two or more reviewers actually run in a cycle, a HIGH raised by exactly one of them is weighed by what the claim asserts before it counts toward current_high:
| Lone reviewer's HIGH asserts | Counts toward current_high when |
|---|---|
| Existence — a symbol, file, flag, commit or ID exists, is absent, or says something specific | source-grounding confirms it, or another reviewer raised the same concern |
| Judgment — a design or correctness property (missing idempotency, a race, an absent rate limit) | always, unless that reviewer's section opens with an evidence-quality discount marker ([reviewed-without-source-citations], [reviewed-without-repo-access], or a diff-only lane) |
Judgment-class findings are deliberately exempt from corroboration: reviewers catch materially different classes of issue, so requiring two of them to independently raise the same architectural concern would suppress exactly what a multi-reviewer setup exists to surface. A suppressed HIGH is still reported, tagged (single-reviewer, unconfirmed) — never dropped. If every reviewer in a cycle carries a discount marker the gate disengages entirely, so a cycle in which nothing was verified can never be counted as converged. current_actionable is unaffected.
With a single reviewer configured — the common case — behavior is unchanged. See reviewer instances for how this interacts with review.reviewer_instances.
What this gate does not do. It weighs evidence, not correctness. A reviewer that cites source evidence anywhere in its review is never discount-marked, so a judgment-class finding it invents still counts on its own — the marker catches "cited nothing" and "had no repo access", not "drew the wrong conclusion from a real citation". That is the deliberate side of the trade: the alternative is requiring corroboration for design findings, which suppresses the genuine architectural concern only one reviewer noticed, and would make adding reviewers weaken the gate. Existence-class claims are the ones tightened here.
/gsd-plan-review-convergence 3 # Default reviewers, 3 cycles
/gsd-plan-review-convergence 3 --codex # Codex-only review
/gsd-plan-review-convergence 3 --all --max-cycles 5
/gsd-ultraplan-phase
[BETA] Offload plan phase to Claude Code's ultraplan cloud; review in browser and import back. The plan drafts remotely so the terminal stays free; review inline comments in a browser, then import the finalized plan back into .planning/ via /gsd-import.
| Flag | Required | Description |
|---|---|---|
N |
Yes | Phase number to plan remotely |
Isolation: Intentionally separate from /gsd-plan-phase so upstream ultraplan changes cannot affect the core planning pipeline.
/gsd-ultraplan-phase 4 # Offload planning for phase 4
/gsd-execute-phase
Execute all plans in a phase with wave-based parallelization, or run a specific wave.
| Argument | Required | Description |
|---|---|---|
N |
Yes | Phase number to execute |
--wave N |
No | Execute only Wave N in the phase |
--cross-ai |
No | Delegate execution to an external AI CLI (uses workflow.cross_ai_command) |
--no-cross-ai |
No | Force local execution even if cross-AI is enabled in config |
Prerequisites: Phase has PLAN.md files
Produces: per-plan {phase}-{N}-SUMMARY.md, git commits, and {phase}-VERIFICATION.md when the phase is fully complete
Package install failures (v1.42.1): If a plan's install step fails, the executor surfaces a checkpoint:human-verify and stops. It does not auto-install a similarly-named alternative. This is intentional — silently substituting package names is how slopsquatting spreads. Respond to the checkpoint after verifying the package on its registry page.
/gsd-execute-phase 1 # Execute phase 1
/gsd-execute-phase 1 --wave 2 # Execute only Wave 2
/gsd-execute-phase 2 --cross-ai # Delegate phase 2 to external AI CLI
/gsd-verify-work
User acceptance testing with auto-diagnosis.
| Argument | Required | Description |
|---|---|---|
N |
No | Phase number (defaults to last executed phase) |
Prerequisites: Phase has been executed
Produces: {phase}-UAT.md, fix plans if issues found
For browser-backed UAT, use a configured browser MCP server. The current Open GSD companion is gsd-browser (gsd-browser mcp), which provides deterministic navigation, versioned refs, assertions, screenshots, visual diffs, recordings, and human takeover. Legacy Playwright MCP servers remain usable when already configured.
/gsd-verify-work 1 # UAT for phase 1
Coverage-aware UAT routing (#1602). When a SUMMARY.md carries a coverage: frontmatter block, verify-work classifies each deliverable deterministically instead of prompting for every prose bullet: deliverables proven by passing tests are auto-passed (recorded with source: automated, no prompt) and only judgment-dependent deliverables are presented for human sign-off. SUMMARYs without a coverage: block fall back to the previous prose-based extraction unchanged. See the coverage: block reference below.
Honest verifier — insufficient_spec abstention (#1154). A must_haves.truths item carrying the verification: backstop marker (a non-inferable check the edge-probe surfaced at spec time) is graded specially: if the verifier cannot confirm it with explicit evidence (a passing wired held-out/property-based test, or a directly-observed behavior), it abstains — the item is reported unverified — held-out test recommended and the phase verdict becomes human_needed (with reason insufficient_spec, distinct from ordinary manual-UAT human_needed), never a silent passed. Autonomous runs complete with "N unverified non-inferable checks" rather than hard-halting; interactive runs route the item to the end-of-phase human checkpoint. Abstention is exogenous (driven by the backstop tag, never a self-judged "abstain if unsure") and an inferable truth is never abstained. Reliable on capable verifier tiers (sonnet+); the budget haiku tier degrades toward current behavior. See Honest Verifier.
SUMMARY coverage: block
A SUMMARY.md may carry an optional coverage: frontmatter block — a list of per-deliverable entries that joins requirements → tests → verification status:
| Field | Description |
|---|---|
id |
Stable identifier (D1, D2…), unique within the SUMMARY |
description |
The deliverable in human-readable form |
requirement |
Optional REQ-ID linking to REQUIREMENTS.md |
verification[].kind |
unit | integration | e2e | automated_ui | manual_procedural | other |
verification[].ref |
Test path + descriptor, screenshot ref, or command |
verification[].status |
pass | fail | unknown |
human_judgment |
Required boolean. true always routes to a human |
rationale |
Required when human_judgment: true |
A deliverable is auto-passed only when human_judgment: false, its verification list is non-empty, and every entry's status is pass. Anything else — human_judgment: true, an empty verification, a non-pass status, or a schema error — is presented to a human (fail-safe). Inspect the classification directly with:
node gsd-tools.cjs uat classify-coverage --summary .planning/phases/01-foundation/01-01-SUMMARY.md
/gsd-ship
Create PR from completed phase work with auto-generated body.
| Argument | Required | Description |
|---|---|---|
N |
No | Phase number or milestone version (e.g., 4 or v1.0) |
--draft |
No | Create as draft PR |
Prerequisites: Phase verified (/gsd-verify-work passed), gh CLI installed and authenticated
Produces: GitHub PR with rich body from planning artifacts, STATE.md updated
/gsd-ship 4 # Ship phase 4
/gsd-ship 4 --draft # Ship as draft PR
PR body includes:
- Phase goal from ROADMAP.md
- Changes summary from SUMMARY.md files
- Requirements addressed (REQ-IDs)
- Verification status
- Key decisions
- Optional configured PRD-style sections from
ship.pr_body_sections
Ship gates (capability-driven): /gsd-ship runs every active ship:pre gate from the capability registry. Two are on by default:
- Security (
securitycapability): blocks whileSECURITY.mdreportsthreats_open > 0. Resolve via/gsd-secure-phase {n}. - Broken-windows ledger (
broken-windowscapability, issue #1950): whenworkflow.windows_enforce=trueis set, blocks while.planning/WINDOWS.mdreports anyopenentry. The ledger accumulates stubs, TODOs, skipped tests, unrun verifies, and unmet truths across phases. Resolve an entry withgsd-tools windows fixed <id>(defect resolved) orgsd-tools windows waive <id> "<reason>"(justified deferral — reason is required and recorded). Inspect viagsd-tools windows status. Enforcement is opt-in (defaultworkflow.windows_enforce=false): enable withgsd config-set workflow.windows_enforce true; tracking continues regardless.
See Custom PR Body Sections for onboarding, examples, and validation rules.
/gsd-ui-review
Retroactive 6-pillar visual audit of implemented frontend.
| Argument | Required | Description |
|---|---|---|
N |
No | Phase number (defaults to last executed phase) |
Prerequisites: Project has frontend code (works standalone, no GSD project needed)
Produces: {phase}-UI-REVIEW.md, screenshots in .planning/ui-reviews/
For richer visual evidence, pair this with gsd-browser or another browser MCP server so the audit can capture screenshots, state, console/network context, and reproducible interaction steps.
/gsd-ui-review # Audit current phase
/gsd-ui-review 3 # Audit phase 3
/gsd-audit-uat
Cross-phase audit of all outstanding UAT and verification items.
Prerequisites: At least one phase has been executed with UAT or verification Produces: Categorized audit report with human test plan
/gsd-audit-uat
/gsd-audit-milestone
Verify milestone met its definition of done.
Prerequisites: All phases executed Produces: Audit report with gap analysis
/gsd-audit-milestone
/gsd-complete-milestone
Archive milestone, tag release.
Prerequisites: Milestone audit complete (recommended)
Produces: MILESTONES.md entry, git tag
/gsd-complete-milestone
Pre-close artifact audit. Before archiving, the workflow runs gsd-tools audit-open and reports every unresolved item across nine categories:
| Category | Source | Open when |
|---|---|---|
| Debug sessions | .planning/debug/ |
status not resolved / complete |
| Quick tasks | .planning/quick/ |
SUMMARY missing or not complete |
| Threads | .planning/threads/ |
status not terminal |
| Pending todos | .planning/todos/pending/ |
present |
| Seeds | .planning/seeds/ |
not yet implemented |
| UAT gaps | *-UAT.md |
scenarios still pending |
| Verification gaps | *-VERIFICATION.md |
verdict gaps_found / human_needed |
| CONTEXT questions | *-CONTEXT.md |
questions left open |
| Deferred items | deferred-items.md |
entry lacks status: resolved |
The four phase-scoped categories above (UAT gaps, Verification gaps, CONTEXT questions, Deferred items) read phase directories from both the active .planning/phases/ root and every archived .planning/milestones/vX.Y-phases/ root (#3458) — an item still unresolved when its milestone closed and its phase directory archived stays visible in every later audit instead of silently disappearing. In --json output, an item sourced from an archived milestone carries an archived_milestone field (e.g. "v1.0"); active items omit the field entirely. The human-readable report labels an archived item's line with (archived vX.Y) so a phase number that repeats across milestones (numbering restarts at 01 after each archive) is not misread as one duplicate line.
If any category is non-empty you are prompted with [R] Resolve / [A] Acknowledge all / [C] Cancel. [A] calls gsd-tools audit-open acknowledge once per open item — the CLI writer that actually suppresses each item starting at the next audit-open scan — then records the same items to STATE.md under its own ## Deferred Items heading (a disclosure record, not the suppression mechanism) and closes as override_closeout; an all-clear closes as verified_closeout.
audit-open acknowledge (#3458 follow-up). Suppresses one open item by writing (or refreshing) a verdict-preserving audit_acknowledged marker in the artifact's own frontmatter:
gsd-tools audit-open acknowledge --category <category> --milestone <version> [--at <YYYY-MM-DD>] <identifier flags…>
--category and --milestone are always required; --at defaults to today. The identifier flags depend on --category:
--category |
Identifier flags |
|---|---|
debug_sessions |
--slug <slug> |
threads |
--slug <slug> |
seeds |
--seed-id <id> |
todos |
--filename <file> |
quick_tasks |
--dir <dir> (the .planning/quick/<dir>/ directory name — note this is the ORIGINAL directory name, not the date-stripped slug the audit JSON displays) |
uat_gaps, verification_gaps, context_questions |
--phase <phase> --file <file> [--archived-milestone <version>] |
deferred_items |
--phase <phase> --file <file> --text <exact bullet text> [--archived-milestone <version>] |
The marker never overwrites the artifact's own status: field for the eight frontmatter-marker categories — only deferred_items is the deliberate exception, where the marker IS the entry's status: field (there is no other meaning for that field on a deferred-items.md bullet). The marker also self-invalidates: it snapshots the artifact's current observed state at acknowledgment time — its status: for most categories, a composite of status: plus its open-scenario count for uat_gaps (a status can stay the same while more scenarios go pending), and a content digest of the full question set (not just a count) for context_questions (so replacing every question's text while holding the count steady still invalidates the snapshot) — and the item resurfaces on its own the moment that snapshot no longer matches — an edited, reopened, or otherwise-changed artifact is never silently suppressed forever. --json output on audit-open (the run subcommand, default) now reports an acknowledged count per category alongside counts, plus an acknowledged.total, so a clean audit (counts.total === 0) can be told apart from one that is clean only because earlier items are still being suppressed (acknowledged.total > 0).
Note: the
deferred-items.mdcategory is the per-phase SCOPE BOUNDARY log a phase agent writes when it finds a defect it should not fix. It is a different artifact from the## Deferred Itemssection[A]writes intoSTATE.md, which records what you acknowledged at close.
Truncated-window guard. Archiving also refuses when the milestone's ROADMAP window is truncated —
Cannot mark milestone complete: the ROADMAP window for "<version>" is truncated. This is the case where the milestone's heading is found but its section closes before reaching the roadmap's### Phase N:region (typically a closed-milestone heading sitting in between), which previously degraded to an over-inclusive filter and archived every phase directory in the project rather than the milestone's own. An unreadable ROADMAP.md or a version with no matching section at all are pre-existing, legitimately-handled states and are not refused here. Same override as below:gsd-tools milestone complete <version> --force --confirm(#3726:--confirmis required for any mutating run;--forcealone does not imply it). A window that is genuinely empty — a freshly-declared milestone with no phases yet — is not affected and still completes normally.
Unstarted-phase guard. Archiving refuses if the milestone's ROADMAP still lists a phase with no phase directory on disk —
Cannot mark milestone complete: ROADMAP lists N unstarted phase(s). If a phase was intentionally deferred or merged without a directory, rungsd-tools milestone complete <version> --force --confirm(the/gsd-complete-milestoneworkflow runs the underlying command without--force, so use the CLI directly to override;--confirmis required for any mutating run — #3726). ASTATE.mdmilestone:value that does not match<version>prints a WARNING and still runs the guard (#2946).
Sentinel directories stay put. Moving phase directories into the archive (the default, unless
--no-archive-phasesis passed) now excludes999.*(backlog) and0-*(pre-milestone) directories via the same sentinel predicate the unstarted-phase guard already uses. Previously the archive move was scoped only by the milestone window, so a sentinel directory sitting inside that window could be archived along with the milestone's own phases.
Quick-task archival (opt-in, default OFF, #2142). Unlike phase archival above, quick-task archival does not run unless you say yes — doing nothing leaves
.planning/quick/untouched. If.planning/quick/contains at least one directory, the workflow asks:Archive completed quick tasks into this milestone too?with optionsYes — archive quick tasks into v[X.Y]/Skip. Choosing "Yes" passes--archive-quickto the underlyinggsd-tools milestone completecall, which moves every directory under.planning/quick/into.planning/milestones/v[X.Y]-quick/, (re)writes that directory'sREADME.mdindex (built by scanning the archive directory, not STATE.md), and clears the data rows of STATE.md's### Quick Tasks Completedtable while preserving its header and column variant. Known limit: there is no on-disk record of which milestone a quick task belongs to, so archival buckets all remaining.planning/quick/*into the one milestone being completed — a task predating an earlier, unarchived milestone lands in the current bucket regardless. See Archiving quick tasks for the full walkthrough, including the retroactive path.
/gsd-milestone-summary
Generate comprehensive project summary from milestone artifacts for team onboarding and review.
| Argument | Required | Description |
|---|---|---|
version |
No | Milestone version (defaults to current/latest milestone) |
Prerequisites: At least one completed or in-progress milestone
Produces: .planning/reports/MILESTONE_SUMMARY-v{version}.md
Summary includes:
- Overview, architecture decisions, phase-by-phase breakdown
- Key decisions and trade-offs
- Requirements coverage
- Tech debt and deferred items
- Getting started guide for new team members
- Interactive Q&A offered after generation
/gsd-milestone-summary # Summarize current milestone
/gsd-milestone-summary v1.0 # Summarize specific milestone
/gsd-new-milestone
Start next version cycle.
| Argument | Required | Description |
|---|---|---|
name |
No | Milestone name |
--reset-phase-numbers |
No | Restart the new milestone at Phase 1 and archive old phase dirs before roadmapping |
--ws <name> |
No | Scope the milestone to a workstream; skips the shared PROJECT.md write |
Prerequisites: Previous milestone completed
Produces: Updated PROJECT.md, new REQUIREMENTS.md, new ROADMAP.md
/gsd-new-milestone # Interactive
/gsd-new-milestone "v2.0 Mobile" # Named milestone
/gsd-new-milestone --reset-phase-numbers "v2.0 Mobile" # Restart milestone numbering at 1
/gsd-new-milestone --ws search "v2.0 Search" # Scope to a workstream
Phase Management Commands
/gsd-phase
CRUD for phases in ROADMAP.md — add, insert, remove, or edit phases with a single consolidated command.
| Flag | Description |
|---|---|
| (none) | Append a new integer phase to the end of the current milestone |
--insert <N> |
Insert urgent work as a decimal phase (e.g., 3.1) after phase N |
--remove <N> |
Remove a future phase and renumber subsequent phases |
--edit <N> |
Edit any field of an existing phase in place |
--force |
Allow editing in-progress or completed phases (used with --edit) |
Prerequisites: .planning/ROADMAP.md exists
Produces: Updated ROADMAP.md
/gsd-phase "Add authentication system" # Append new phase with description
/gsd-phase --insert 3 "Fix auth race condition" # Insert between phase 3 and 4 → creates 3.1
/gsd-phase --remove 7 # Remove phase 7, renumber 8→7, 9→8, etc.
/gsd-phase --edit 5 # Edit any field of phase 5
/gsd-phase --edit 5 --force # Edit phase 5 even if in-progress or completed
/gsd-mvp-phase
Guided MVP planning for a phase — prompts for a user story, runs SPIDR splitting check, writes **Mode:** mvp to ROADMAP.md, then delegates to /gsd-plan-phase (which auto-detects MVP mode via the roadmap field).
| Argument | Required | Description |
|---|---|---|
N |
Yes | Phase number to convert to MVP mode (integer or decimal like 2.1) |
| Flag | Description |
|---|---|
--force |
Allow converting an in_progress or completed phase |
Prerequisites: Phase must already exist in ROADMAP.md (created via /gsd-new-project, /gsd-phase, or /gsd-phase --insert). The command does not create new phases — it converts an existing phase.
Behaviour: Collects a structured user story, validates format, runs a SPIDR splitting check, writes **Goal:** and **Mode:** mvp to the phase's ROADMAP.md section, then delegates to /gsd-plan-phase <N>. See How to plan an MVP phase for a walkthrough.
Walking Skeleton: Auto-triggered when --mvp (or mode: mvp) is used on Phase 1 of a new project with no prior phase summaries. The planner produces SKELETON.md alongside PLAN.md.
Produces: Updated ROADMAP.md, then all artifacts from /gsd-plan-phase; SKELETON.md when Walking Skeleton mode fires.
/gsd-mvp-phase 1 # MVP planning for phase 1
/gsd-mvp-phase 2.1 # MVP planning for a decimal phase
/gsd-mvp-phase 3 --force # Convert phase 3 even if in-progress
/gsd-validate-phase
Retroactively audit and fill Nyquist validation gaps.
| Argument | Required | Description |
|---|---|---|
N |
No | Phase number |
/gsd-validate-phase 2 # Audit test coverage for phase 2
phase uat-passed <N> [--require-verification]
Runtime-neutral predicate that evaluates HUMAN-UAT results for a phase and reports whether all required checks passed. Uses markdown-aware parsing that ignores false-positive contexts (YAML frontmatter, fenced code blocks, HTML comments, and blockquotes), so incomplete checkbox fragments in prose sections never trigger a false pass.
| Argument | Required | Description |
|---|---|---|
N |
Yes | Phase number to evaluate |
--require-verification |
No | Require at least one *-VERIFICATION.md file alongside UAT results; fails if none are found |
Output fields (JSON):
| Field | Type | Description |
|---|---|---|
passed |
boolean |
true only when at least one check exists AND all checks pass AND no blockers — fail-closed (no vacuous pass) |
uat_files |
string[] |
Filenames of *-UAT.md files evaluated |
verification_files |
string[] |
Filenames of *-VERIFICATION.md files evaluated |
checks[] |
{ file, test, name, result, passing }[] |
Per-item evaluation results parsed from heading blocks |
blockers[] |
string[] |
Human-readable reasons for failure (frontmatter issues, failing/missing test items, policy violations, malformed markdown) — NOT a subset of checks[] |
no_uat_artifacts |
boolean |
true when no real UAT test items were parsed (no *-UAT.md files, unreadable dir, or files with no test blocks); when true, passed is always false |
policy.require_verification |
boolean |
Whether --require-verification was active |
Programmatic access: node gsd-tools.cjs phase uat-passed <N> [--require-verification] [--raw] — see CLI Tools Reference
node gsd-tools.cjs phase uat-passed 3 # Evaluate UAT for phase 3
node gsd-tools.cjs phase uat-passed 3 --require-verification # Also require VERIFICATION.md
node gsd-tools.cjs phase uat-passed 3 --raw # Machine-readable JSON output
planning inspect
Emit a read-only, schema-versioned JSON snapshot of the whole planning state —
milestone identity, active phase/plan/status, per-phase verification, roadmap
acceptance and UAT evidence (kept separate), requirement rows with mapped-phase
traceability, plan and task rows with planned/changed file provenance, and
independent accepted_phases / completed_plans fractions.
For downstream tools that need planning state without re-parsing GSD's Markdown. Mutates nothing. Takes no arguments — a stray positional or unknown flag is a fail-loud usage error rather than a silently-ignored one.
node gsd-tools.cjs query planning inspect # schema-v1 snapshot
node gsd-tools.cjs query planning.inspect # dotted canonical form, identical
node gsd-tools.cjs query planning inspect --cwd /path/to/project
Check schema_version before reading any other field, and branch on each value's
scope — complete with an empty value is a real answer, unreadable is not.
Full field reference: CLI Tools. Integration
walkthrough: Consume the planning snapshot.
task resolve-content --plan <path> --task-id <id> --raw
Resolves one task's content (action/verify/acceptance_criteria/read_first/done) from an
external issue tracker instead of reading it inline from a task's PLAN.md body. Called by
execute-plan.md's per-task loop, once per task carrying a tracker-id attribute, before that
task's read_first gate. See ADR-3646 and
Develop a task-content resolver capability.
| Argument | Required | Description |
|---|---|---|
--plan |
Yes | Path to the PLAN.md the task belongs to |
--task-id |
Yes | The task's tracker-id attribute value, e.g. beads:GSD-42 |
--raw |
No | Machine-readable JSON output |
Exit codes:
| Exit | Meaning |
|---|---|
0 |
Resolution attempted (or not needed) — see resolved/reason below |
| non-zero | Hard halt. A resolver was found and invoked but failed (tracker unreachable, id not found, timeout, malformed JSON output). stderr names the tracker-id, the tracker prefix, and the resolver's error. Never fall back to inline PLAN.md content on this outcome. |
Output fields (JSON, exit 0 only):
| Field | Type | Description |
|---|---|---|
resolved |
boolean |
true only when a resolver was found, invoked, and returned non-empty content |
reason |
string |
Present when resolved is false: "no-resolver" (task has a tracker-id but no installed capability declares a matching trackerPrefix) or "empty" (the resolver ran successfully but returned empty/absent content — the one legitimate pre-migration fallback case) |
content |
object |
Present when resolved is true. Supersedes this task's inline <action>/<verify>/<acceptance_criteria>/<read_first>/<done> for every downstream gate in the execute step |
node gsd-tools.cjs task resolve-content --plan .planning/phases/03-name/03-1-PLAN.md --task-id beads:GSD-42 --raw
execute-plan.md only invokes this command when the task carries a tracker-id attribute; a task with no tracker-id is unaffected.
Navigation Commands
/gsd-next
Open the state-aware smart-entry launcher. It reads .planning/STATE.md, ROADMAP.md, verification artifacts, and git status, classifies the current situation, shows a short menu, then dispatches exactly one existing GSD command.
This is a launcher/router only — it never performs project work directly. Detection is handled by gsd-tools smart-entry --json; the markdown workflow presents the menu with AskUserQuestion or a numbered --text fallback.
Situations detected: no project, paused work, blockers, failed verification, first-phase setup, planning, executing, pending verification, idle stranded work, complete milestone, or unknown state.
/gsd-next # Detect state and route to the best next action
/gsd-progress
Show status, next steps, and automatically advance to the next logical workflow step. Reads project state and determines the appropriate action. Use /gsd-next when you want an interactive smart-entry menu before dispatch; use /gsd-progress --next when you want GSD to advance directly.
| Flag | Description |
|---|---|
--next |
Automatically advance to the next logical workflow step without manual route selection |
--next --auto |
Like --next, but chains steps automatically until milestone completion or a blocking decision |
--next --converge |
When the next action is planning, route it through /gsd-plan-review-convergence; requires workflow.plan_review_convergence=true |
--cross-ai |
Alias for --converge |
| Reviewer flags | With --converge, pass through every reviewer lane flag: --gemini, --claude, --codex, --coderabbit, --opencode, --qwen, --cursor, --agy / --antigravity, --ollama, --lm-studio, --llama-cpp, --kimi-code, --all, and --max-cycles N |
--do "task description" |
Analyze freeform intent and dispatch to the most appropriate GSD command |
--forensic |
Append a 6-check integrity audit after the standard report (STATE consistency, orphaned handoffs, deferred scope drift, memory-flagged pending work, blocking todos, uncommitted code) |
Milestone name and version. The milestone this report shows comes from one implementation shared with
/gsd-stats,/gsd-managerandroadmap analyze. A name is no longer cut short at a parenthesis (v3.3 — Portability (Windows)keeps its full name), a### Phase N:heading that mentions a version is never mistaken for the milestone heading, and a milestone that cannot be identified is shown as absent rather than as a plausible-lookingv1.0/milestone. See CLI-TOOLS.md → Milestone identity.
Auto-routing behavior (--next):
- No project → suggests
/gsd-new-project - Phase needs discussion → runs
/gsd-discuss-phase - Phase needs planning → runs
/gsd-plan-phase(or/gsd-plan-review-convergencewhen--convergeis set) - Phase needs execution → runs
/gsd-execute-phase - Phase needs verification → runs
/gsd-verify-work - All phases complete → suggests
/gsd-complete-milestone
Status reporting is scoped to the current milestone's ROADMAP.md window and sentinel-filtered: 999.* backlog directories and 0-* pre-milestone directories are not counted as current-milestone phases, so the reported progress percentage no longer holds at 100 while phases in the active window are still outstanding.
Nullable percentage. The reported completion percentage is
null— never a fabricated0,100, or stale value — when the current milestone's phase set is not fully readable/scoped. See CLI-TOOLS.md → A non-COMPLETE scope withholds the percentage entirely.
/gsd-progress # "Where am I? What's next?" with auto-routing
/gsd-progress --next # Advance to next step automatically
/gsd-progress --next --auto # Chain steps automatically until completion
/gsd-progress --next --auto --converge # Hands-free run with plan-review convergence
/gsd-progress --do "fix the auth bug" # Dispatch freeform intent to best GSD command
/gsd-progress --forensic # Standard report + integrity audit
/gsd-resume-work
Restore full context from last session.
/gsd-resume-work # After context reset or new session
/gsd-pause-work
Save context handoff when stopping mid-phase.
| Flag | Description |
|---|---|
--report |
Generate a post-session summary in .planning/reports/ capturing commits, file changes, and phase progress |
/gsd-pause-work # Creates continue-here.md
/gsd-pause-work --report # Creates continue-here.md + session report
/gsd-manager
Interactive command center for managing multiple phases from one terminal.
Prerequisites: .planning/ROADMAP.md exists
Behavior:
- Dashboard of all phases with visual status indicators
- Recommends optimal next actions based on dependencies and progress
- Dispatches work: discuss runs inline; plan/execute run as background agents on runtimes that support nested background dispatch, or inline on Claude Code
- Designed for power users parallelizing work across phases from one terminal
- Supports per-step passthrough flags via
manager.flagsconfig (see Configuration)
/gsd-manager # Open command center dashboard
/gsd-manager --analyze-deps # Scan ROADMAP phases for dependency relationships before parallel execution
Phase completion is disk-strict (ADR-3180 §7.4, issue #3186). A phase's status here — and in roadmap analyze, roadmap update-plan-progress, and phase complete — is decided by one rule: a passing *-VERIFICATION.md on disk, checked unconditionally (plan count is never a precondition, so a zero-plan phase with a passing verification reports complete). A ticked - [x] checkbox in ROADMAP.md is a human annotation only; it carries no machine authority and is never consulted for these commands' completion verdicts. roadmap update-plan-progress additionally withholds writing the checkbox/completion date while any plan in the phase has no matching *-SUMMARY.md, mirroring phase complete's own coverage gate.
Which phase comes next is a different question, and the roadmap answers it. Disk-strictness
governs whether a phase is complete; it does not decide the successor. phase complete resolves
next_phase as the lowest-numbered phase above the completed one that ROADMAP.md declares for the
current milestone, regardless of which phase directories happen to exist. Phase numbers decide the
sequence — the order rows happen to appear in the file does not — a phase that has not been planned yet has no directory, and must still
be selected ahead of a later phase that does. When the roadmap and the directories agree, the
directory supplies the spelling (the zero-padded token and its on-disk slug). The directory scan is
the fallback only when no readable roadmap phase list exists (#3701; the same rule #3581 established
for init.progress).
Checkpoint Heartbeats (#2410):
Background execute-phase runs emit [checkpoint] markers at every wave and plan
boundary so the Claude API SSE stream never idles long enough to trigger
Stream idle timeout - partial response received on multi-plan phases. The
format is:
[checkpoint] phase {N} wave {W}/{M} starting, {count} plan(s), {P}/{Q} plans done
[checkpoint] phase {N} wave {W}/{M} plan {plan_id} starting ({P}/{Q} plans done)
[checkpoint] phase {N} wave {W}/{M} plan {plan_id} complete ({P}/{Q} plans done)
[checkpoint] phase {N} wave {W}/{M} complete, {P}/{Q} plans done ({ok}/{count} ok)
If a background phase fails partway through, grep the transcript for [checkpoint]
to see the last confirmed boundary. The manager's background-completion handler
uses these markers to report partial progress when an agent errors out.
Manager Passthrough Flags:
Configure per-step flags in .planning/config.json under manager.flags. These flags are appended to each dispatched command:
{
"manager": {
"flags": {
"discuss": "--auto",
"plan": "--skip-research",
"execute": "--cross-ai"
}
}
}
/gsd-help
Show GSD commands at the tier you ask for. Default fits one screen; --full is the complete reference; <topic> jumps directly to one section.
/gsd-help # One-page tour (default)
/gsd-help --brief # ~10-line one-liner refresher of top commands
/gsd-help --full # Complete reference (every command, every flag)
/gsd-help <topic> # One section only (e.g. /gsd-help debug)
/gsd-help --brief <topic> # Compact scoped lookup — signature + one-line summary
See gsd-core/workflows/help/modes/topic.md for the full alias table. Unknown topics print the recognized list.
Utility Commands
/gsd-explore
Socratic ideation session — guide an idea through probing questions, optionally spawn research, then route output to the right GSD artifact (notes, todos, seeds, research questions, requirements, or a new phase).
| Argument | Required | Description |
|---|---|---|
topic |
No | Topic to explore (e.g., /gsd-explore authentication strategy) |
/gsd-explore # Open-ended ideation session
/gsd-explore authentication strategy # Explore a specific topic
When the optional research pass runs, each surfaced claim is dispositioned three ways — admit (survives a prompted-to-refute pass and is grounded in a source, shown with the source), refute (a source authoritative for that claim contradicts it, dropped or corrected), or abstain (unverifiable, non-authoritative disagreement, or a source-vs-prior conflict). Abstained claims are listed in a separate Unresolved ledger rather than smoothed into the narrative. (Claims-side analogue of the honest verifier, #1154.)
/gsd-undo
Safe git revert — roll back GSD phase or plan commits using the phase manifest with dependency checks and a confirmation gate.
| Flag | Required | Description |
|---|---|---|
--last N |
(one of three required) | Show recent GSD commits for interactive selection |
--phase NN |
(one of three required) | Revert all commits for a phase |
--plan NN-MM |
(one of three required) | Revert all commits for a specific plan |
Safety: Checks dependent phases/plans before reverting; always shows a confirmation gate.
/gsd-undo --last 5 # Pick from the 5 most recent GSD commits
/gsd-undo --phase 03 # Revert all commits for phase 3
/gsd-undo --plan 03-02 # Revert commits for plan 02 of phase 3
/gsd-import
Ingest an external plan file into the GSD planning system with conflict detection against PROJECT.md decisions before writing anything.
| Flag | Required | Description |
|---|---|---|
--from <filepath> |
Yes (or --from-gsd2) |
Path to the external plan file to import |
--from-gsd2 |
Yes (or --from) |
Reverse-migrate a GSD-2 (.gsd/) project back to GSD v1 (.planning/) format |
--path <dir> |
No | With --from-gsd2: path to the GSD-2 project directory (defaults to current directory) |
Process: Detects conflicts → prompts for resolution → writes as GSD PLAN.md → validates via gsd-plan-checker
/gsd-import --from /tmp/team-plan.md # Import and validate an external plan
/gsd-import --from-gsd2 # Migrate from GSD-2 back to v1 (current dir)
/gsd-import --from-gsd2 --path ~/old-project # Migrate from a different path
/gsd-ingest-docs
Bootstrap or merge a .planning/ setup from existing ADRs, PRDs, SPECs, and docs in a repo. Runs parallel classification (gsd-doc-classifier) plus synthesis with precedence rules and cycle detection (gsd-doc-synthesizer). Produces a three-bucket conflicts report (INGEST-CONFLICTS.md: auto-resolved, competing-variants, unresolved-blockers) and hard-blocks on LOCKED-vs-LOCKED ADR contradictions.
| Argument / Flag | Required | Description |
|---|---|---|
path |
No | Target directory to scan (defaults to repo root) |
--mode new|merge |
No | Override auto-detect (defaults: new if .planning/ absent, merge if present) |
--manifest <file> |
No | YAML file listing {path, type, precedence?} per doc; overrides heuristic classification |
--resolve auto |
No | Conflict resolution mode (v1: only auto; interactive is reserved) |
Limits: v1 caps at 50 docs per invocation. Extracts the shared conflict-detection contract into references/doc-conflict-engine.md, which /gsd-import also consumes.
/gsd-ingest-docs # Scan repo root, auto-detect mode
/gsd-ingest-docs docs/ # Only ingest under docs/
/gsd-ingest-docs --manifest ingest.yaml # Explicit precedence manifest
/gsd-quick
Execute ad-hoc task with GSD guarantees.
| Flag | Description |
|---|---|
--full |
Enable the complete quality pipeline — discussion + research + plan-checking + verification |
--validate |
Plan-checking (max 2 iterations) + post-execution verification only; no discussion or research |
--discuss |
Lightweight pre-planning discussion |
--research |
Spawn focused researcher before planning |
Granular flags are composable: --discuss --research --validate is equivalent to --full.
| Subcommand | Description |
|---|---|
list |
List all quick tasks with status |
status <slug> |
Show status of a specific quick task |
resume <slug> |
Resume a specific quick task by slug |
/gsd-quick # Basic quick task
/gsd-quick --discuss --research # Discussion + research + planning
/gsd-quick --validate # Plan-checking + verification only
/gsd-quick --full # Complete quality pipeline
/gsd-quick list # List all quick tasks
/gsd-quick status my-task-slug # Show status of a quick task
/gsd-quick resume my-task-slug # Resume a quick task
/gsd-quick-batch
Batch several /gsd-quick-shaped tasks together — one coordinator plans, dispatches, and merges them as one run (#3676, epic #3344, ADR-1239 "Quick-batch binding"). See Batch quick tasks for a walkthrough.
| Argument | Description |
|---|---|
| Inline task list | A bulleted or numbered list, ≥2 items, one per line |
--file <path> |
Read the task list from a file instead of inline text |
| Flag | Description |
|---|---|
--jobs auto|N |
auto (default) uses the negotiated dispatch capacity as-is; N caps effective concurrency at min(task count, N, capacity) |
--validate |
Per-item plan-checker loop (max 2 iterations) + post-merge verification |
--research |
Per-item researcher dispatched before planning |
--resume <batch-id> |
Skip task-list parsing and batch creation; dispatch only the batch's still-eligible items |
Not supported in v1: --discuss and --full are rejected with a usage error before any dispatch — run /gsd-quick --discuss/--full per item instead.
/gsd-quick-batch "- fix the login timeout\n- add the retry banner" # inline list
/gsd-quick-batch --file .planning/my-tasks.md # from a file
/gsd-quick-batch --jobs 3 --validate "- item one\n- item two\n- item three"
/gsd-quick-batch --resume 260101-abc # resume an interrupted batch
/gsd-autonomous
Run all remaining phases autonomously.
| Flag | Description |
|---|---|
--from N |
Start from a specific phase number |
--to N |
Stop after completing a specific phase number |
--only N |
Restrict execution to phase N; lifecycle step is skipped |
--interactive |
Lean context with user input |
--converge |
Route each planning step through /gsd-plan-review-convergence; requires workflow.plan_review_convergence=true |
--cross-ai |
Alias for --converge |
| Reviewer flags | With --converge, pass through every reviewer lane flag: --gemini, --claude, --codex, --coderabbit, --opencode, --qwen, --cursor, --agy / --antigravity, --ollama, --lm-studio, --llama-cpp, --kimi-code, --all, and --max-cycles N |
--text |
Replace AskUserQuestion prompts with plain numbered lists |
/gsd-autonomous # Run all remaining phases
/gsd-autonomous --from 3 # Start from phase 3
/gsd-autonomous --to 5 # Run up to and including phase 5
/gsd-autonomous --from 3 --to 5 # Run phases 3 through 5
/gsd-autonomous --only 4 # Run only phase 4
/gsd-autonomous --only 4 --converge # Run one phase with plan convergence
/gsd-autonomous --converge --all --max-cycles 5
/gsd-autonomous --text # Run with text-mode prompts
/gsd-debug
Systematic debugging with persistent state.
| Argument | Required | Description |
|---|---|---|
description |
No | Description of the bug |
| Flag | Description |
|---|---|
--diagnose |
Diagnosis-only mode — investigate without attempting fixes |
Subcommands:
/gsd-debug list— List all active debug sessions with status, hypothesis, and next action/gsd-debug status <slug>— Print full summary of a session (Evidence count, Eliminated count, Resolution, TDD checkpoint) without spawning an agent/gsd-debug continue <slug>— Resume a specific session by slug (surfaces Current Focus then spawns continuation agent)/gsd-debug [--diagnose] <description>— Start new debug session (existing behavior;--diagnosestops at root cause without applying fix)
TDD mode: When tdd_mode: true in .planning/config.json, debug sessions require a failing test to be written and verified before any fix is applied (red → green → done).
/gsd-debug "Login button not responding on mobile Safari"
/gsd-debug --diagnose "Intermittent 500 errors on /api/users"
/gsd-debug list
/gsd-debug status auth-token-null
/gsd-debug continue form-submit-500
/gsd-add-tests
Generate tests for a completed phase.
| Argument | Required | Description |
|---|---|---|
N |
No | Phase number |
/gsd-add-tests 2 # Generate tests for phase 2
/gsd-stats
Display project statistics.
/gsd-stats # Project metrics dashboard
Scoped to the current milestone's ROADMAP.md window and sentinel-filtered: 999.* backlog directories and 0-* pre-milestone directories are not counted as current-milestone phases.
Nullable percentage. The reported completion percentage is
null— never a fabricated0,100, or stale value — when the current milestone's phase set is not fully readable/scoped (e.g. a truncated or unresolvable milestone window, or an unreadable.planning/phasesdirectory). See CLI-TOOLS.md → A non-COMPLETE scope withholds the percentage entirely.
/gsd-profile-user
Generate a developer behavioral profile from Claude Code session analysis across 8 dimensions (communication style, decision patterns, debugging approach, UX preferences, vendor choices, frustration triggers, learning style, explanation depth). Produces artifacts that personalize Claude's responses.
| Flag | Description |
|---|---|
--questionnaire |
Use interactive questionnaire instead of session analysis |
--refresh |
Re-analyze sessions and regenerate profile |
Generated artifacts:
USER-PROFILE.md— Full behavioral profileCLAUDE.mdprofile section — Auto-discovered by Claude Code
/gsd-profile-user # Analyze sessions and build profile
/gsd-profile-user --questionnaire # Interactive questionnaire fallback
/gsd-profile-user --refresh # Re-generate from fresh analysis
/gsd-health
Validate .planning/ directory integrity. With --context, probes the
context-window utilization guard against the 60 % / 70 % thresholds (added
v1.40.0, #2792).
| Flag | Description |
|---|---|
--repair |
Auto-fix recoverable issues |
--backfill |
Synthesize missing MILESTONES.md entries from .planning/milestones/vX.Y-ROADMAP.md snapshots |
--context |
Probe context-window utilization; warns at 60 %, critical at 70 % |
/gsd-health # Check integrity
/gsd-health --repair # Check and fix
/gsd-health --backfill # Backfill missing MILESTONES.md entries
/gsd-health --context # Context-utilization triage
STATE.md freshness (W024). STATE.md records the commit it was last written
against (state_head in its frontmatter). When the codebase has moved a long way
since — 20 commits or more — health adds an advisory noting that STATE.md's
contents should be treated as approximate.
This is a freshness proxy, not a drift measurement: the count includes commits that never touched anything STATE.md describes, and the stamp is refreshed by any command that writes STATE.md, so a low count means STATE.md was written recently rather than that its contents are correct. The advisory never changes health's pass/fail status, and stays silent when the stamp is absent or the project isn't a git repo — "unknown" is reported as unknown, not as fresh.
Cross-scope install shadowing (W028). When a runtime is installed at both global and local scope and the host's trigger-resolution rules make one scope's /gsd-* surface unreachable — the Claude Code case: personal skill always beats project command — health adds a WARNING-severity advisory naming the shadowed triggers, the winning scope, and the losing scope. It never changes health's pass/fail status and is never auto-fixable (there is no single correct scope to remove), so --repair never touches it. Identical to the same advisory GSD Core prints at install time. See Interpret install-shadow warnings.
--repair does not apply destructive fixes. Resetting config.json
(resetConfig) and regenerating STATE.md (regenerateState) are destructive
— the former loses custom settings, the latter loses session history — so
--repair reports these fixes as available but never applies them
automatically; the suggested command must be run by hand (ADR-3180,
#3309). The same migration
split two previously-conflated diagnostic codes: W021 now covers only the
phase-id-convention mismatch, with the STATE-vs-ROADMAP milestone-complete
mismatch it used to also report moving to the new W026; likewise W017 now
covers only orphan worktrees, with the stale-worktree case moving to the new
W027.
/gsd-cleanup
Archive accumulated phase directories from completed milestones, prune local branches whose upstream has been deleted, and — when applicable — retroactively archive quick tasks (#2142).
Behaviour: Presents a dry-run summary of phase directories to archive (moved from .planning/phases/ into .planning/milestones/v{X.Y}-phases/) and local branches whose upstream is gone (pruned via git fetch --prune). Requires confirmation before writing any changes. The currently checked-out branch is never pruned.
Retroactive quick-task archival (opt-in, #2142). When .planning/quick/ contains at least one directory, /gsd-cleanup additionally offers to sweep it: Archive ALL {N} quick-task directories into v{X.Y} — {Milestone Name}? This buckets every remaining quick task into this ONE milestone; there is no way to split them per-milestone. with options Yes — archive quick tasks into v{X.Y} / Skip. The target is the single most recent completed milestone (from MILESTONES.md) that does not yet have a v{X.Y}-quick archive directory. If .planning/quick/ is empty, this step is not offered at all. Confirming calls the narrower gsd-tools milestone archive-quick <version> command — the same move/README-index/table-reset logic /gsd-complete-milestone's --archive-quick uses, but without touching ROADMAP.md, REQUIREMENTS.md, MILESTONES.md, or milestone-completion guards, since /gsd-cleanup typically targets a milestone that is already closed. See Archiving quick tasks for the full walkthrough and the silent/failure cases.
/gsd-cleanup
Spiking & Sketching Commands
/gsd-spike
Run 2–5 focused feasibility experiments before committing to an implementation approach. Each experiment uses Given/When/Then framing, produces executable code, and returns a VALIDATED / INVALIDATED / PARTIAL verdict.
| Argument | Required | Description |
|---|---|---|
idea |
No | The technical question or approach to investigate |
--quick |
No | Skip intake conversation; use idea text directly |
--wrap-up |
No | Package completed spike findings into a reusable project-local skill |
Produces: .planning/spikes/NNN-experiment-name/ with code, results, and README; .planning/spikes/MANIFEST.md
--wrap-up produces: .claude/skills/spike-findings-[project]/ skill file
/gsd-spike # Interactive intake
/gsd-spike "can we stream LLM tokens through SSE"
/gsd-spike --quick websocket-vs-polling
/gsd-spike --wrap-up # Package findings into a reusable skill
/gsd-sketch
Explore design directions through throwaway HTML mockups before committing to implementation. Produces 2–3 variants per design question for direct browser comparison.
| Argument | Required | Description |
|---|---|---|
idea |
No | The UI design question or direction to explore |
--quick |
No | Skip mood intake; use idea text directly |
--text |
No | Text-mode fallback — replace interactive prompts with numbered lists (for non-Claude runtimes) |
--wrap-up |
No | Package winning sketch decisions into a reusable project-local skill |
Produces: .planning/sketches/NNN-descriptive-name/index.html (2–3 interactive variants), README.md, shared themes/default.css; .planning/sketches/MANIFEST.md
--wrap-up produces: .claude/skills/sketch-findings-[project]/ skill file
/gsd-sketch # Interactive mood intake
/gsd-sketch "dashboard layout"
/gsd-sketch --quick "sidebar navigation"
/gsd-sketch --text "onboarding flow" # Non-Claude runtime
/gsd-sketch --wrap-up # Package winning sketch into a skill
Diagnostics Commands
/gsd-forensics
Post-mortem investigation for failed GSD workflows — diagnoses what went wrong.
| Argument | Required | Description |
|---|---|---|
description |
No | Problem description (prompted if omitted) |
Prerequisites: .planning/ directory exists
Produces: .planning/forensics/report-{timestamp}.md
Investigation covers:
- Git history analysis (recent commits, stuck patterns, time gaps)
- Artifact integrity (expected files for completed phases)
- STATE.md anomalies and session history
- Uncommitted work, conflicts, abandoned changes
- At least 4 anomaly types checked (stuck loop, missing artifacts, abandoned work, crash/interruption)
- GitHub issue creation offered if actionable findings exist
/gsd-forensics # Interactive — prompted for problem
/gsd-forensics "Phase 3 execution stalled" # With problem description
/gsd-extract-learnings
Extract reusable patterns, anti-patterns, and architectural decisions from completed phase work.
| Argument | Required | Description |
|---|---|---|
N |
Yes | Phase number to extract learnings from |
| Flag | Description |
|---|---|
--all |
Extract learnings from all completed phases |
--format |
Output format: markdown (default), json |
Prerequisites: Phase has been executed (SUMMARY.md files exist)
Produces: .planning/phases/{phase-dir}/{padded-phase}-LEARNINGS.md
Extracts:
- Architectural decisions and their rationale
- Patterns that worked well (reusable in future phases)
- Anti-patterns encountered and how they were resolved
- Technology-specific insights
- Performance and testing observations
/gsd-extract-learnings 3 # Extract learnings from phase 3
/gsd-extract-learnings --all # Extract from all completed phases
gsd-tools check verify-command-paths
Deterministic resolvability probe over a phase's <automated> verify commands (#2401). Run
automatically by /gsd-plan-phase before the plan-check pass and handed to gsd-plan-checker;
runnable by hand to see what the checker saw.
| Argument | Required | Description |
|---|---|---|
N |
Yes | Phase number whose -PLAN.md files are probed |
| Flag | Description |
|---|---|
--raw |
Emit the JSON payload with no surrounding prose |
Prerequisites: none — an unresolvable phase degrades to a JSON payload with readError set
rather than failing.
Produces: JSON on stdout. Nothing is written to disk.
It never executes command text. PLAN.md is LLM-authored, so the probe only resolves paths
and stats directories; a package.json it finds is read for script names only.
It grounds exactly two forms — a leading cd <literal> chain and npm --prefix <literal> —
and refuses to guess at anything else. pushd, make -C, yarn --cwd, pnpm -C, and
cargo --manifest-path are not recognized today and report unresolvable.
Each row of commands carries command, plan, task, status, severity, reason,
form, rawTarget, target, manifest, script, sentinel, and base. There is
deliberately no suggestion field — the probe reports what failed to resolve and leaves
the replacement to the planner.
status |
Meaning |
|---|---|
ok |
Target resolved (a reason may still carry an advisory — see below) |
broken |
Target does not resolve, or holds no required manifest — blocker |
unresolvable |
The path could not be grounded (variable, glob, substitution, ~) — warning |
pending_creation |
An earlier task in this phase creates the target — not a finding |
not_applicable |
No cd/--prefix to resolve, or a Nyquist MISSING … sentinel |
reason |
severity |
What it means |
|---|---|---|
missing_dir |
blocker |
The resolved directory does not exist, or is not a directory |
no_manifest |
blocker |
The directory exists but holds no package.json / Makefile the command needs |
dynamic_path |
warning |
The path contains $, a backtick, *, ?, or ~ — refused, not guessed |
outside_root |
warning |
A bare ancestor climb (cd ../..); the base differs under worktree execution |
script_missing |
warning |
npm run <script> names a script the manifest does not define — this phase may add it |
manifest_unreadable |
warning |
package.json is oversized, unparseable, or not a JSON object |
null |
none |
Nothing to report |
A non-empty readError means the probe could not look — distinct from finding nothing.
gsd-tools check verify-command-paths 3 --raw # probe phase 3's verify commands
See Resolve verify-command path findings.
gsd-tools check verify-failure-directions
Deterministic presence probe over a phase's stated failing directions (#3172). Run automatically
by /gsd-plan-phase before the plan-check pass and handed to gsd-plan-checker; runnable by
hand to see what the checker saw.
Every runnable <automated> command must carry a <fails_when> sibling naming what output
constitutes failure. A command with no expressible failure mode is not an acceptance test.
| Argument | Required | Description |
|---|---|---|
N |
Yes | Phase number whose -PLAN.md files are probed |
| Flag | Description |
|---|---|
--raw |
Emit the JSON payload with no surrounding prose |
Prerequisites: none — an unresolvable phase degrades to a JSON payload with readError set
rather than failing.
Produces: JSON on stdout. Nothing is written to disk.
It never executes command text, and it never authors a statement for the planner — a prescribed failure signal would be copied verbatim and carry no information.
Pairing. Within one <task>, each <fails_when> binds to the nearest preceding
<automated>; the first statement after a command is the binding one. N runnable commands need
N statements. A redundant second statement for the same command is ignored.
Each row of commands carries command, statement, plan, task, status, and severity.
status |
severity |
Meaning |
|---|---|---|
ok |
none |
A non-empty, non-placeholder statement is bound to this command |
missing |
blocker |
The command has no <fails_when> at all |
empty |
blocker |
A <fails_when> is present but blank |
placeholder |
blocker |
The whole statement is TBD, TODO, N/A, NA, none, unknown, TBA, ?, or - (case-insensitive, whole value only) |
orphan |
warning |
A <fails_when> that follows no command — it satisfies nothing |
sentinel |
none |
A Nyquist MISSING — Wave 0 … placeholder; not runnable, so exempt |
The top-level status is blocked when any row is a blocker, unresolvable when the probe
could not look, and ok otherwise. A non-empty readError means the probe could not look —
distinct from finding nothing.
gsd-tools check verify-failure-directions 3 --raw # probe phase 3's failing directions
See State a failing direction.
Workstream Management
/gsd-workstreams
Manage parallel workstreams for concurrent work on different milestone areas.
Subcommands:
| Subcommand | Description |
|---|---|
list |
List all workstreams with status (default if no subcommand) |
create <name> |
Create a new workstream |
status <name> |
Detailed status for one workstream |
switch <name> |
Set active workstream |
progress |
Progress summary across all workstreams |
complete <name> |
Archive a completed workstream |
resume <name> |
Resume work in a workstream |
Prerequisites: Active GSD project
Produces: Workstream directories under .planning/, state tracking per workstream
/gsd-workstreams # List all workstreams
/gsd-workstreams create backend-api # Create new workstream
/gsd-workstreams switch backend-api # Set active workstream
/gsd-workstreams status backend-api # Detailed status
/gsd-workstreams progress # Cross-workstream progress overview
/gsd-workstreams complete backend-api # Archive completed workstream
/gsd-workstreams resume backend-api # Resume work in workstream
Configuration Commands
/gsd-settings
Interactive configuration of workflow toggles and model profile. Questions are grouped into six visual sections:
- Planning — Research, Plan Checker, Pattern Mapper, Nyquist, UI Phase, UI Gate, AI Phase
- Execution — Verifier, TDD Mode, Code Review, Code Review Depth (conditional — only when Code Review is on), UI Review
- Docs & Output — Commit Docs, Skip Discuss, Worktrees
- Features — Intel, Graphify
- Model & Pipeline — Model Profile, Auto-Advance, Branching
- Misc — Context Warnings, Research Qs
All answers are merged via gsd-tools query config-set into the resolved project config path (.planning/config.json for a standard install, or .planning/workstreams/<active>/config.json when a workstream is active), preserving unrelated keys. After confirmation, the user may save the full settings object to ~/.gsd/defaults.json so future /gsd-new-project runs start from the same baseline.
/gsd-settings # Interactive config
/gsd-config
Configure GSD settings interactively — workflow toggles, advanced knobs, integrations, and model profile — with a single consolidated command.
| Flag | Description |
|---|---|
| (none) | Common-case toggles: model, research, plan_check, verifier, branching |
--advanced |
Power-user knobs: planning tuning, timeouts, branch templates, cross-AI execution, runtime/output |
--integrations |
Third-party API keys, code-review CLI routing, agent-skill injection |
--profile <name> |
Quick profile switch: quality, balanced, budget, or inherit |
--advanced sections:
| Section | Keys |
|---|---|
| Planning Tuning | workflow.plan_bounce, workflow.plan_bounce_passes, workflow.plan_bounce_script, workflow.subagent_timeout, workflow.inline_plan_threshold |
| Execution Tuning | workflow.node_repair, workflow.node_repair_budget, workflow.auto_prune_state |
| Discussion Tuning | workflow.max_discuss_passes |
| Cross-AI Execution | workflow.cross_ai_execution, workflow.cross_ai_command, workflow.cross_ai_timeout |
| Git Customization | git.base_branch, git.phase_branch_template, git.milestone_branch_template |
| Runtime / Output | response_language, context_window, search_gitignored, graphify.build_timeout |
All answers merge via gsd-tools query config-set, preserving unrelated keys. API keys are masked (****<last-4>) in all output.
/gsd-config # Common-case interactive config
/gsd-config --advanced # Power-user knobs (six-section prompt)
/gsd-config --integrations # API keys, review CLI routing, agent skills
/gsd-config --profile budget # Switch to budget profile
/gsd-config --profile quality # Switch to quality profile
See CONFIGURATION.md for the full schema and defaults.
/gsd-surface
Toggle which skills are surfaced — apply a profile, list, or disable a cluster without reinstall.
| Subcommand | Description |
|---|---|
list |
Show enabled and disabled clusters and skills |
status |
Alias for list plus token cost summary |
profile <name> |
Write baseProfile and re-stage skills |
disable <cluster> |
Add cluster to disabled list and re-stage |
enable <cluster> |
Remove cluster from disabled list and re-stage |
reset |
Delete surface delta; return to install-time profile |
/gsd-surface list # Show current surface
/gsd-surface profile standard # Switch to standard profile
/gsd-surface disable utility # Disable the utility cluster
/gsd-surface reset # Restore install-time profile
gsd capability
Manage GSD capabilities — first-party (shipped) and third-party overlays. CLI form gsd capability <subcommand>. See the gsd capability command reference for the full contract, source-spec forms, and install layout.
| Subcommand | Description |
|---|---|
install <spec> [--integrity …] [--scope global|project] [--yes] [--shared-file <rel>]… |
Resolve, verify, consent-gate, and install a capability from a registry / git / npm / tarball / local source |
update [<id> | --all] [--scope …] [--yes] |
Re-resolve a capability's recorded source and upgrade it (atomic stage-then-swap) |
remove <id> [--purge-data] [--scope …] |
Remove an installed overlay capability's files + marker-isolated shared edits (first-party cannot be removed here) |
list [--json] |
List first-party + installed overlay capabilities as a JSON array |
outdated [--json] [--scope …] |
Light-peek each installed overlay's recorded source and report which have a newer version available (per-source matrix; npm ranges resolve the highest matching version; pinned for immutable/explicit git refs or exact npm versions; manual/unknown for sources that can't be auto-checked) |
disable <id> / enable <id> |
Toggle a capability's activation state (same as capability set <id> --off/--on) |
state / set <id> … |
Inspect resolved capability state / set activation + per-hook gates |
gsd capability list --json # All capabilities as JSON
gsd capability install ./my-cap --scope project # Install a local capability into the project
gsd capability install npm:@org/gsd-cap-x@^1 --yes # Install from npm, granting executable-surface consent
gsd capability update my-cap # Upgrade from its recorded source
gsd capability outdated --json # Which installed overlays have a newer version?
gsd capability disable ui # Turn a FIRST-PARTY capability off (disable/enable/set are first-party only)
gsd capability remove my-cap --scope project # Turn the installed overlay off — remove it from the scope it was installed in
Programmatic access: node gsd-tools.cjs capability <subcommand> — see CLI Tools Reference.
Brownfield Commands
/gsd-map-codebase
Analyze existing codebase with parallel mapper agents. Use --fast for a quick single-agent scan, or --query to search existing intel. First-time brownfield setup should usually start with /gsd-onboard, which hands off to this command when a map is missing.
| Argument | Required | Description |
|---|---|---|
area |
No | Scope mapping to a specific area |
--fast |
No | Rapid single-focus assessment — spawns one mapper agent instead of four parallel ones (lightweight alternative) |
--query <term> |
No | Search queryable codebase intel files in .planning/intel/ (requires intel.enabled: true) |
| Flag | Description |
|---|---|
--focus tech|arch|quality|concerns|tech+arch |
Focus area for --fast mode (default: tech+arch) |
Produces: .planning/codebase/ analysis documents (full mode); targeted document(s) in .planning/codebase/ (--fast); intel query results (--query)
/gsd-map-codebase # Full codebase analysis (4 parallel agents)
/gsd-map-codebase auth # Focus on auth area
/gsd-map-codebase --fast # Quick tech + arch overview (1 agent)
/gsd-map-codebase --fast --focus quality # Quality and code health only
/gsd-map-codebase --query authentication # Search intel for a term
/gsd-graphify
Build, query, and inspect the project knowledge graph stored in .planning/graphs/. Opt-in via graphify.enabled: true in config.json (see Configuration Reference); when disabled, the command prints an activation hint and stops.
| Subcommand | Description |
|---|---|
build |
Build or rebuild the knowledge graph (runs graphify update . inline and refreshes .planning/graphs/) |
query <term> |
Search the graph for a term |
status |
Show graph freshness and statistics |
diff |
Show changes since the last build |
Produces: .planning/graphs/ graph artifacts (nodes, edges, snapshots)
/gsd-graphify build # Build or rebuild the knowledge graph
/gsd-graphify query authentication # Search the graph for a term
/gsd-graphify status # Show freshness and statistics
/gsd-graphify diff # Show changes since last build
Programmatic access: node gsd-tools.cjs graphify <build|query|status|diff|snapshot> — see CLI Tools Reference.
/gsd-mempalace-recall
Recall prior decisions, patterns, and surprises from MemPalace into MEMORY-RECALL.md before planning. Reads CONTEXT.md to derive a search query, runs mempalace wake-up + mempalace_search + mempalace_kg_query/timeline, and writes a deduped recall document. When MemPalace is unavailable the skill writes a stub and continues. Opt-in via mempalace.enabled: true and mempalace.recall_on_plan: true (see Configuration Reference).
| Argument | Required | Description |
|---|---|---|
phase-slug |
No | Phase slug used to scope the search query (defaults to the active phase from CONTEXT.md) |
Produces: MEMORY-RECALL.md in the active phase directory (or an "unavailable" stub when MemPalace is unreachable)
/gsd-mempalace-recall # Recall for the current phase
/gsd-mempalace-recall 03-auth # Recall scoped to a specific phase slug
/gsd-mempalace-capture
File a phase artifact (CONTEXT.md, PLAN.md, or SUMMARY.md) verbatim into MemPalace and mirror decision facts into its temporal knowledge graph. Uses mempalace_check_duplicate before filing, so re-running the same phase is idempotent. Opt-in via mempalace.enabled: true and mempalace.capture_artifacts: true (see Configuration Reference).
| Argument | Required | Description |
|---|---|---|
CONTEXT.md|PLAN.md|SUMMARY.md |
No | Artifact to capture (defaults to CONTEXT.md when called at discuss:post) |
Produces: A drawer in the appropriate MemPalace room (decisions, planning, or milestones) plus KG facts when mempalace.mirror_kg: true
/gsd-mempalace-capture CONTEXT.md # File CONTEXT.md → decisions room
/gsd-mempalace-capture PLAN.md # File PLAN.md → planning room
/gsd-mempalace-capture SUMMARY.md # File SUMMARY.md → milestones room
gsd-tools intel api-surface
Render the .planning/intel/api-map.json index (built by /gsd-map-codebase) into a human-readable API-SURFACE.md in .planning/intel/. Gated on intel.enabled: true in config.json; when Intel is disabled the command prints an activation hint and exits. The output path is always .planning/intel/API-SURFACE.md — there is no --out or --format flag. When api-map.json is absent or empty the command still writes the file with an explicit "incomplete" banner so consumers never mistake silence for "nothing exists".
Produces: .planning/intel/API-SURFACE.md
node gsd-tools.cjs intel api-surface # Render api-map.json → API-SURFACE.md
The API-SURFACE.md output lists exported symbols (functions, classes, decorators, constants) grouped by source file with their signatures and detected visibility. When plan_review.source_grounding_authority is set to intel, the plan drift guard reads api-map.json directly rather than invoking the api-surface renderer.
gsd-tools refactor
Evaluate the complexity of the files a phase touched and surface a scoped refactor proposal when a function's score crosses refactor.complexity_threshold or jumps past its recorded anchor by more than refactor.complexity_jump_delta. Gated on refactor.trigger_enabled: true in config.json (see Configuration Reference); when disabled, every subcommand prints an activation hint and stops — it is inert otherwise.
| Subcommand | Description |
|---|---|
evaluate --phase <N> [--since <ref>] [--raw] |
Analyze files changed since the phase's start commit (or --since <ref>) and write a <NN>-REFACTOR.md proposal when a candidate triggers |
status [--phase <N>] [--raw] |
List all recorded proposals across phases, or show the proposal for one phase |
accept --phase <N> [--raw] |
Disposition the phase's untriaged proposal as accepted; re-anchors the target function's baseline to its current score |
decline --phase <N> --reason "<text>" [--raw] |
Disposition the phase's untriaged proposal as declined with a recorded reason; re-anchors the baseline the same way |
Produces: .planning/phases/<N>/<NN>-REFACTOR.md (from evaluate, only when a candidate triggers)
node gsd-tools.cjs refactor evaluate --phase 3 # Evaluate phase 3's touched files
node gsd-tools.cjs refactor evaluate --phase 3 --since abc123 # Evaluate against a specific ref
node gsd-tools.cjs refactor status # List all recorded proposals
node gsd-tools.cjs refactor status --phase 3 # Show phase 3's proposal
node gsd-tools.cjs refactor accept --phase 3 # Accept phase 3's proposal
node gsd-tools.cjs refactor decline --phase 3 --reason "flat dispatch table, not a real hotspot" # Decline with a reason
Trigger semantics match ESLint's complexity: {max: N} — strictly greater, so a score exactly equal to refactor.complexity_threshold does not trigger. The jump check compares against the function's anchor (the score recorded the last time it was accepted or declined), not the single-phase change, so it accumulates across phases until dispositioned. refactor accept/refactor decline are the only actions that clear a tracked proposal — the score improving on its own does not. See ADR-1953.
AI Integration Commands
/gsd-ai-integration-phase
Generate an AI-SPEC.md design contract for phases that involve building AI systems. Presents an interactive decision matrix, surfaces domain-specific failure modes and eval criteria, and produces AI-SPEC.md with a framework recommendation, implementation guidance, and evaluation strategy.
Produces: {phase}-AI-SPEC.md in the phase directory
Spawns: 3 parallel specialist agents: domain-researcher, framework-selector, ai-researcher, and eval-planner
/gsd-ai-integration-phase # Wizard for the current phase
/gsd-ai-integration-phase 3 # Wizard for a specific phase
/gsd-eval-review
Audit an executed AI phase's evaluation coverage and produce an EVAL-REVIEW.md remediation plan. Checks implementation against the AI-SPEC.md evaluation plan produced by /gsd-ai-integration-phase. Scores each eval dimension as COVERED/PARTIAL/MISSING.
Prerequisites: Phase has been executed and has an AI-SPEC.md
Produces: {phase}-EVAL-REVIEW.md with findings, gaps, and remediation guidance
/gsd-eval-review # Audit current phase
/gsd-eval-review 3 # Audit a specific phase
Update Commands
/gsd-update
Update GSD with changelog preview, and optionally sync skills or reapply local patches.
| Flag | Description |
|---|---|
--sync |
Sync skills from the GSD registry after updating |
--reapply |
Restore local modifications (patches) after updating |
--next / --rc |
Target the @next RC dist-tag instead of @latest (installs or refreshes a release candidate, e.g. 1.4.0-rc.1; see ADR #660) |
/gsd-update # Check for updates and install
/gsd-update --sync # Update and sync skills
/gsd-update --reapply # Update and reapply local patches
/gsd-update --next # Install from the @next RC dist-tag
Recovering your own files. The update protects two different buckets, and they recover differently:
| Bucket | What it holds | How it comes back |
|---|---|---|
gsd-local-patches/ |
GSD-shipped files you modified | /gsd-update --reapply (three-way merge) |
gsd-user-files-backup/ |
Files you added inside GSD-managed directories | The update offers a restore before it finishes |
When the backup is non-empty, the update lists what it saved, flags anything
that may no longer be compatible with the release just installed, and asks
whether to restore. Declining leaves the backup untouched — it is never
deleted — so you can restore later with
gsd-tools restore-custom-files --config-dir <config-dir> --apply.
Code Quality Commands
/gsd-code-review
Review source files changed during a phase for bugs, security vulnerabilities, and code quality problems. Use --fix to auto-fix findings after review.
| Argument | Required | Description |
|---|---|---|
N |
Yes | Phase number whose changes to review (e.g., 2 or 02) |
--depth=quick|standard|deep |
No | Review depth level. Overrides both workflow.code_review_depth and any matching workflow.code_review_depth_overrides path rule — the flag always wins. quick: pattern-matching only (~2 min). standard: per-file analysis with language-specific checks (~5–15 min, default). deep: cross-file analysis including import graphs and call chains (~15–30 min) |
--files file1,file2,... |
No | Explicit comma-separated file list; skips SUMMARY/git scoping entirely |
--fix |
No | Auto-fix issues after review — reads REVIEW.md, spawns fixer agent, commits each fix atomically |
--fix --all |
No | Include Info findings in fix scope (default: Critical + Warning only) |
--fix --auto |
No | Fix + re-review iteration loop, capped at 3 iterations |
Prerequisites: Phase has been executed and has SUMMARY.md or git history
Produces: {phase}-REVIEW.md with severity-classified findings; {phase}-REVIEW-FIX.md when --fix is used
Spawns: gsd-code-reviewer agent; gsd-code-fixer agent (with --fix)
Optional structural pre-pass: Set code_quality.fallow.enabled to true to run fallow before the agent review. GSD writes {phase}/FALLOW.json and embeds a Structural Findings (fallow) section in REVIEW.md. Configure scope and profile with code_quality.fallow.scope and code_quality.fallow.profile.
/gsd-code-review 3 # Standard review for phase 3
/gsd-code-review 2 --depth=deep # Deep cross-file review
/gsd-code-review 4 --files src/auth.ts,src/token.ts # Explicit file list
/gsd-code-review 3 --fix # Review then fix Critical + Warning findings
/gsd-code-review 3 --fix --all # Review then fix all findings including Info
/gsd-code-review 3 --fix --auto # Review, fix, and re-review until clean (max 3 iterations)
/gsd-audit-fix
Autonomous audit-to-fix pipeline — runs an audit, classifies findings, fixes auto-fixable issues with test verification, and commits each fix atomically.
| Flag | Description |
|---|---|
--source <audit> |
Which audit to run (default: audit-uat) |
--severity high|medium|all |
Minimum severity to process (default: medium) |
--max N |
Maximum findings to fix (default: 5) |
--dry-run |
Classify findings without fixing (shows classification table) |
Prerequisites: At least one phase has been executed with UAT or verification Produces: Fix commits with test verification; classification report
/gsd-audit-fix # Run audit-uat, fix medium+ issues (max 5)
/gsd-audit-fix --severity high # Only fix high-severity issues
/gsd-audit-fix --dry-run # Preview classification without fixing
/gsd-audit-fix --max 10 --severity all # Fix up to 10 issues of any severity
Fast & Inline Commands
/gsd-fast
Execute a trivial task inline — no subagents, no planning overhead. For typo fixes, config changes, small refactors, forgotten commits.
| Argument | Required | Description |
|---|---|---|
task description |
No | What to do (prompted if omitted) |
Not a replacement for /gsd-quick — use /gsd-quick for anything needing research, multi-step planning, or verification.
/gsd-fast "fix typo in README"
/gsd-fast "add .env to gitignore"
/gsd-review
Cross-AI peer review of phase plans from external AI CLIs.
Reviewers are prompted to verify the plan's claims against the actual repository source — opening the referenced files and citing file:line evidence with the mechanism — rather than reviewing the plan text in isolation. A reviewer that has no file access flags what it cannot verify instead of asserting it, and file:line-grounded findings are weighted more heavily during consensus synthesis.
The prompt-fed CLI reviewers all start from the same assembled prompt. It is built before any reviewer runs and carries the PROJECT.md excerpt, the roadmap section, every PLAN file, CONTEXT.md, RESEARCH.md and REQUIREMENTS.md — reviewers then open repository files from there, as described above. To keep the Claude reviewer on the same starting footing as the others, its lane declares CLAUDE_CODE_DISABLE_CLAUDE_MDS=1 CLAUDE_CODE_DISABLE_AUTO_MEMORY=1, so it does not additionally inherit your global CLAUDE.md, the project CLAUDE.md, or Claude Code auto-memory (the two are independently-toggled mechanisms, so each gets its own variable). The pair is merged into that one spawn's environment — it does not affect the session you ran /gsd-review from or any other reviewer in the same run, and it suppresses those memory mechanisms only, not hooks, skills, or MCP configuration. (Inside Claude Code the Claude reviewer is skipped entirely for independence, so this applies when reviewing from another runtime.)
| Argument | Required | Description |
|---|---|---|
--phase N |
Yes | Phase number to review |
| Flag | Description |
|---|---|
--gemini |
Include Gemini CLI review |
--claude |
Include Claude CLI review (separate session) |
--codex |
Include Codex CLI review |
--coderabbit |
Include CodeRabbit review |
--opencode |
Include OpenCode review (via GitHub Copilot) |
--qwen |
Include Qwen Code review (Alibaba Qwen models) |
--cursor |
Include Cursor agent review |
--agy / --antigravity |
Include Antigravity CLI review (free with Google credentials) |
--kimi-code |
Include Kimi Code CLI review (Moonshot AI) |
--ollama |
Include Ollama server review |
--lm-studio |
Include LM Studio server review |
--llama-cpp |
Include llama.cpp server review |
--all |
Include all available reviewers (CLI + local model servers) |
No jq, curl, or timeout prerequisite. Reviewer lanes used to shell out to these for JSON parsing, HTTP calls, and wall-clock bounding, which made five lanes unavailable on a stock Windows/Git-Bash host (no jq) and left one lane unbounded on stock macOS (no timeout or gtimeout). GSD now does all three itself, so every lane runs with nothing on your PATH but the reviewer's own CLI. A lane that declares an external tool it genuinely needs still reports itself unavailable with an install hint rather than running into an empty review.
Unavailable reviewers: an explicit reviewer flag is an assertion. If you name a reviewer that cannot run on this host — its CLI is not installed, a required external tool is missing, its local server is unreachable, or its egress destination changed (see below) — /gsd-review reports an error for that reviewer and does not proceed with a reduced set. This holds even when other named reviewers are available: --gemini --qwen on a host without qwen fails rather than silently becoming a Gemini-only review.
Reviewers reached through --all or review.default_reviewers behave differently: an undetected reviewer there is reported as an info note and skipped. Use --all for "whatever is available on this host", and review.default_reviewers for a preferred subset that may vary by host.
Changed egress destination: a reviewer lane is sent your plan text, requirements, research findings, and CONTEXT.md decisions. For the local-server lanes (--ollama, --lm-studio, --llama-cpp) the destination comes from a config key such as review.ollama_host, which is an ordinary editable value — including by a pull request. If you installed such a lane as a capability and its host has changed since you consented to it, GSD blocks that lane and tells you both destinations rather than sending your plans somewhere you did not approve. Re-consent to allow the new host. First-party lanes shipped with GSD are unaffected, and a lane you never consented to is not blocked — there is nothing to compare it against.
Default reviewer behavior (no flags):
- If
review.default_reviewersis unset,/gsd-reviewruns all detected reviewers (current default behavior). - If
review.default_reviewersis set,/gsd-reviewruns only that subset (for example["gemini","codex"]). review.default_reviewersmay include names fromreview.reviewer_instances; each instance runs as its own reviewer identity using its configured adapter/model. Instance names are not CLI flags.--allalways overrides config and runs the full detected set.- Explicit flags (for example
--cursor) override both--alland config defaults for that run.
Produces: {phase}-REVIEWS.md — consumable by /gsd-plan-phase --reviews
Its frontmatter records the model each reviewer resolved to, as models: (the model id, or unknown, with a (reasoning=<level>) suffix when GSD applied a reasoning effort to that lane) and model_sources: (how each value was determined — pinned, served, requested, banner, transcript, or unknown). See Resolved model recording.
Plan coverage manifest (#3301): the assembled prompt tells every prompt-fed reviewer exactly which plan ids exist in this review and the total count, and asks for one heading-verbatim section per id before any cross-plan or overall-risk content — so a review that silently stops partway through a multi-plan phase is no longer indistinguishable from one that covered every plan. A mechanical check grades each reviewer's output against that same id list and records an optional plan_coverage: frontmatter block, present only when a reviewer's output does not mention every id (diagnostic only — it never blocks the run). CodeRabbit is not graded — it is a diff-only reviewer that never receives the prompt carrying the manifest.
# set project default reviewers for no-flag /gsd-review runs
gsd config-set review.default_reviewers '["gemini","codex"]'
/gsd-review --phase 2 # runs gemini+codex from config
/gsd-review --phase 3 --all
/gsd-review --phase 2 --gemini
/gsd-review --phase 2 --cursor # one-off override
/gsd-pr-branch
Create a clean PR branch by filtering out .planning/ commits.
| Argument | Required | Description |
|---|---|---|
target branch |
No | Base branch (default: main) |
Purpose: Reviewers see only code changes, not GSD planning artifacts.
Prerequisites: Clean working tree — uncommitted changes are rejected before the PR branch is created.
Filter mode: Set by planning.pr_strict. Default (false) keeps structural planning state — STATE.md, ROADMAP.md, MILESTONES.md, PROJECT.md, REQUIREMENTS.md, milestones/** — and drops the transient subdirectories. Strict (true) drops every .planning/ path. The active mode is printed in the run header and in the verification summary.
/gsd-pr-branch # Filter against main
/gsd-pr-branch develop # Filter against develop
/gsd-secure-phase
Retroactively verify threat mitigations for a completed phase.
| Argument | Required | Description |
|---|---|---|
phase number |
No | Phase to audit (default: last completed phase) |
Prerequisites: Phase must have been executed. Works with or without existing SECURITY.md.
Produces: {phase}-SECURITY.md with threat verification results
Spawns: gsd-security-auditor agent
Three operating modes:
- SECURITY.md exists — audit and verify existing mitigations
- No SECURITY.md but PLAN.md has threat model — generate from artifacts
- Phase not executed — exits with guidance
/gsd-secure-phase # Audit last completed phase
/gsd-secure-phase 5 # Audit specific phase
/gsd-docs-update
Generate or update project documentation verified against the codebase.
| Argument | Required | Description |
|---|---|---|
--force |
No | Skip preservation prompts, regenerate all docs |
--verify-only |
No | Check existing docs for accuracy, no generation |
Produces: Up to 9 documentation files (README, architecture, API, getting started, development, testing, configuration, deployment, contributing)
Spawns: gsd-doc-writer agents (one per doc type), then gsd-doc-verifier agents for factual verification
Each doc writer explores the codebase directly — no hallucinated paths or stale signatures. Doc verifier checks claims against the live filesystem.
/gsd-docs-update # Generate/update docs interactively
/gsd-docs-update --force # Regenerate all docs
/gsd-docs-update --verify-only # Verify existing docs only
Task Capture & Backlog Commands
/gsd-capture
Capture ideas, tasks, notes, and seeds to their appropriate destination. Default mode adds a structured todo; flags route to specialized capture workflows.
| Flag | Description |
|---|---|
| (none) | Capture as a structured todo for later work |
--note [text] |
Zero-friction note — append, list (--note list), or promote (--note promote N) |
--backlog <description> |
Add to the backlog parking lot using 999.x numbering |
--seed [idea summary] |
Capture a forward-looking idea with trigger conditions |
--list |
List pending todos and select one to work on |
--list-seeds [status] |
List/audit captured seeds, optionally filtered by status (read-only) |
--global |
Use global scope (for note operations) |
Backlog: 999.x numbering keeps items outside the active phase sequence; phase directories are created immediately so /gsd-discuss-phase and /gsd-plan-phase work on them.
Seeds: Preserve full WHY, WHEN to surface, and breadcrumbs — consumed by /gsd-new-milestone. Audit parked seeds anytime with --list-seeds (optionally --list-seeds dormant).
Produces: .planning/todos/ (default), note files (--note), ROADMAP.md backlog section (--backlog), .planning/seeds/SEED-NNN-slug.md (--seed)
STATE.md rendering: each capture (or --list action that changes the pending count) refreshes STATE.md's "### Pending Todos" section to one bullet per pending todo, each capped at 240 characters — - [date] [area] title — [todo file](path) — Needs .... The todo-file link is repo-relative (.planning/todos/pending/...), so the cap is independent of where the repo is checked out — a long absolute path never consumes the budget or drops the "Needs ..." clause. A todo with no clear next step omits the "Needs ..." clause rather than the bullet. Refresh is fail-safe: a failed or malformed lookup leaves the existing section untouched rather than clearing it.
/gsd-capture "Consider adding dark mode support" # Add todo
/gsd-capture --note "Caching strategy idea" # Quick note
/gsd-capture --note list # List all notes
/gsd-capture --note promote 3 # Promote note 3 to todo
/gsd-capture --backlog "GraphQL API layer" # Add to backlog
/gsd-capture --seed "Add real-time collaboration when WebSocket infra is in place"
/gsd-capture --list # Browse and act on todos
/gsd-capture --list-seeds # Audit all captured seeds
/gsd-capture --list-seeds dormant # Filter seeds by status
/gsd-review-backlog
Review and promote backlog items to active milestone.
Actions per item: Promote (move to active sequence), Keep (leave in backlog), Remove (delete).
/gsd-review-backlog
/gsd-thread
Manage persistent context threads for cross-session work.
| Argument | Required | Description |
|---|---|---|
(none) / list |
— | List all threads |
list --open |
— | List threads with status open or in_progress only |
list --resolved |
— | List threads with status resolved only |
status <slug> |
— | Show status of a specific thread |
close <slug> |
— | Mark a thread as resolved |
name |
— | Resume existing thread by name |
description |
— | Create new thread |
Threads are lightweight cross-session knowledge stores for work that spans multiple sessions but doesn't belong to any specific phase. Lighter weight than /gsd-pause-work.
/gsd-thread # List all threads
/gsd-thread list --open # List only open/in-progress threads
/gsd-thread list --resolved # List only resolved threads
/gsd-thread status fix-deploy-key # Show thread status
/gsd-thread close fix-deploy-key # Mark thread as resolved
/gsd-thread fix-deploy-key-auth # Resume thread
/gsd-thread "Investigate TCP timeout in pasta service" # Create new
Roadmap Management Commands
roadmap validate
Validate ROADMAP.md for structural integrity, including milestone-prefix consistency.
Prerequisites: .planning/ROADMAP.md exists
Produces: Validation report; exits non-zero on any error or warning
node gsd-tools.cjs roadmap validate
roadmap upgrade --convention milestone-prefixed
Migrate legacy Phase N IDs to the milestone-prefixed Phase M-NN convention.
| Flag | Required | Description |
|---|---|---|
--convention milestone-prefixed |
Yes | Target convention to migrate to |
--apply |
No | Write changes to disk (default: dry-run only) |
Prerequisites: .planning/ROADMAP.md exists
Produces: Dry-run diff (default) or in-place ROADMAP.md rewrite (--apply)
node gsd-tools.cjs roadmap upgrade --convention milestone-prefixed # dry-run
node gsd-tools.cjs roadmap upgrade --convention milestone-prefixed --apply # apply
State Management Commands
effort sync
Re-align installed agent files with your current effort and model configuration, without a full reinstall.
Prerequisites: GSD installed for a runtime
Produces: A structured change report; writes only with --apply
node gsd-tools.cjs effort sync # dry run — reports, writes nothing
node gsd-tools.cjs effort sync --apply # write the changes
| Flag | Description |
|---|---|
--apply |
Write the changes. Omitted is a dry run — the default reports and touches nothing |
--dry-run |
Explicit dry run (the default) |
--runtime <name> |
Override the runtime instead of reading it from config |
--config-dir <path> |
Point at a specific runtime config directory |
On claude it re-syncs the effort: frontmatter of installed gsd-*.md agents.
On codex it repairs .toml files that drift from the passive model posture (ADR-2313) — the counterpart to the detection that validate agents performs:
| Situation | What happens |
|---|---|
model pins a tier alias or a claude-* id |
the model line is removed, so the agent inherits the session model |
model_reasoning_effort with no model |
the orphaned effort line is removed (#838) |
model pins a real Codex id |
left untouched, reported skipped — an explicit pin is yours to keep |
| the file cannot be parsed | refused and reported — never partially rewritten |
| the file is a symlink | skipped, as on the Claude path |
Only the targeted lines are removed. Line endings, BOM, key order, comments, blank lines, and any keys GSD does not itself emit are preserved byte-for-byte, so a repair shows up as a two-line diff rather than a reformatted file. Writes are atomic — the file is either its old contents or its new ones, never a partial write.
validate agents
Check that the GSD agents are installed for the active runtime — and, on Codex, that the installed .toml files satisfy the passive model posture and the derived sandbox posture.
Prerequisites: GSD installed for a runtime
Produces: Installed / missing / incomplete agent lists, plus codex_posture and sandbox_posture reports
node gsd-tools.cjs validate agents
codex_posture is populated only when the active runtime is codex; on every other runtime it reports not_codex and reads nothing from disk. It is read-only — it reports violations and never edits your files.
| Violation reason | Meaning |
|---|---|
anthropic_flavored_model |
The .toml pins a GSD tier alias (opus, sonnet, haiku, fable) or a claude-* id. Codex rejects these — the agent fails to spawn with a 400 |
orphaned_reasoning_effort |
A model_reasoning_effort with no model, leaving the model following your Codex session while the effort follows GSD (#838) |
unreadable |
The file could not be read. Other agents are still checked |
Presence and posture are separate verdicts: a missing agent is reported in missing, not as a posture violation. See ADR-2313 for the posture itself, and How to recover and troubleshoot for the symptom-led walkthrough.
sandbox_posture (#3897, ADR-3473 §8.3) is the sibling check for sandbox_mode: each installed Codex .toml's sandbox_mode is compared against the value its role's own tools: frontmatter derives (Write/Edit declared → workspace-write, else read-only). Same shape and short-circuits as codex_posture — populated only on codex, not_codex elsewhere, read-only, and it never makes validate agents exit non-zero on its own; both posture checks are report-only fields for a human or caller to act on.
| Field | Meaning |
|---|---|
ok |
true when no installed .toml's sandbox_mode disagrees with its derived expectation |
violations[] |
{agent, file, expected, found} for a drift, or {agent, file, reason: "unreadable"} when the file could not be read |
checked[] |
Every .toml inspected |
reason |
not_codex (active runtime isn't Codex) or agents_dir_missing — mirrors codex_posture's short-circuit reasons |
A custom or non-roster agent (no matching file under the bundled agents/*.md source) has nothing to derive an expectation from and is silently excluded from violations — this check only asserts against the shipped roster's own declared tool contract.
state update <field> <value>
Update a single STATE.md field.
Prerequisites: .planning/STATE.md exists
Produces: {updated: true, preserved: [...]}, or {updated: false, reason, preserved: [...]}
node gsd-tools.cjs state update "Stopped at" "finished the migration"
Frontmatter keys are projections — write the body field
STATE.md's frontmatter is re-derived from the body on every write. So a frontmatter key like
stopped_at is not the value; it is a projection of the body field Stopped at:. Ask to update the
key and the command refuses, naming the field that does work:
{
"updated": false,
"reason": "Field \"stopped_at\" is a body-derived frontmatter key and is not directly writable. Update its body source instead: state update \"Stopped At\" <value>."
}
This is distinct from a field that genuinely is not there, which still reports
Field "…" not found in STATE.md. The two used to be indistinguishable (#3699).
| Frontmatter key | Body source |
|---|---|
current_phase |
Current Phase (or the prose Phase: line) |
current_phase_name |
Current Phase Name (or the prose Phase: name) |
current_plan |
Current Plan |
status |
Status |
stopped_at |
Stopped At / Stopped at (under ## Session) |
paused_at |
Paused At (under ## Session) |
last_activity |
Last Activity / Last activity (date part) |
last_activity_desc |
Last Activity Description (or the prose after the dash) |
Keys not in this table have no body source at all — milestone and milestone_name come from
ROADMAP.md, progress.* from a scan of .planning/phases/, and last_updated / state_head /
gsd_state_version are recomputed on every write. The refusal names which of those applies.
Repairing a document whose body source is missing
If frontmatter carries a key but the body has no source line for it, there is nothing to derive from and neither route can write. In that one case the frontmatter key is directly writable, and the command says so:
{ "updated": true, "wrote": "frontmatter", "preserved": [] }
wrote: "frontmatter" appears only on this repair path — an ordinary update omits it. The fallback
is deliberately narrow: it will not fire while any body source line still exists (even one stranded
in an archive section), and it will not invent a frontmatter key that is not already there.
state validate
Detect drift between STATE.md and the actual filesystem.
Prerequisites: .planning/STATE.md exists
Produces: Validation report showing any drift between STATE.md fields and filesystem reality, as coded diagnostics
node gsd-tools.cjs state validate
| Flag | Description |
|---|---|
--strict |
Exit non-zero when the report is not valid: true. Off by default. |
Without --strict the command always exits 0, including when it reports
valid: false — so a CI step or git hook has to parse the JSON to decide whether
state is correct. --strict makes the verdict gateable directly:
node gsd-tools.cjs state validate --strict || echo "STATE.md needs attention"
The default is deliberately unchanged: the exit status is observable behavior that reaches downstream consumers who cannot be enumerated, so opting in is a choice the caller makes rather than one imposed on every existing script.
A missing or unreadable STATE.md exits non-zero under --strict too — those report
error or valid: false and are as gateable as any drift warning.
The report also carries a scope field reporting whether the drift derivation could actually run:
scope |
Meaning |
|---|---|
complete |
The derivation ran over usable input — a resolvable phase, a readable disk scan. valid/warnings are a real answer. |
truncated |
Part of the input was cut short (e.g. the phase's plan/summary scan hit its cap) — the answer may be incomplete. |
unscoped |
Current Phase could not be resolved from either frontmatter or body — there was nothing to scope the disk lookup to, so the derivation never ran. |
unreadable |
The frontmatter parse or a filesystem read (the phases directory scan) failed — the derivation could not consult its input. |
valid is not routed from scope: valid still means "no warnings were found," and scope says whether the scan could actually run. A freshly-initialized project reports {valid:true, warnings:[], scope:'unscoped'} — nothing was wrong, and the phase could not be checked. See Interpret state validate results for how to act on each scope value.
Each warnings entry is a coded diagnostic object ({code, severity, message, remedy}), not a bare string. Every remedy is an ADVISE action naming the command or edit to make — none is auto-applied. S001 is severity: ERROR (STATE.md could not be read at all); every other code is severity: WARNING:
| Code | Severity | Meaning |
|---|---|---|
S001 |
error | STATE.md is unreadable/corrupt (embedded NUL or binary content) — reported with valid:false and no other checks run |
S002 |
warning | No usable current_phase/Current Phase/Current Position Phase value anywhere in STATE.md |
S003 |
warning | STATE.md's phase sources (frontmatter vs. body) disagree on the current phase |
S004 |
warning | The phases directory, or a directory matching the current phase, is missing or unreadable |
S005 |
warning | STATE.md's plan count disagrees with the plan count on disk |
S006 |
warning | STATE.md still says "executing" but a *-VERIFICATION.md in the phase shows verification passed |
S007 |
warning | Every plan in the phase has a summary, but STATE.md still says "executing" |
S008 |
warning | STATE.md's Last activity value does not begin with a real calendar date, so no reader can date the project's activity |
S009 |
warning | The Last activity description wrapped onto a second line, and every reader silently drops the remainder |
state sync [--verify]
Reconstruct STATE.md from actual project state on disk.
| Flag | Description |
|---|---|
--verify |
Dry-run mode — show proposed changes without writing |
Prerequisites: .planning/ directory exists
Produces: Updated STATE.md reflecting filesystem reality
node gsd-tools.cjs state sync # Reconstruct STATE.md from disk
node gsd-tools.cjs state sync --verify # Dry-run: show changes without writing
state rebuild [--dry-run] [--verbose]
Re-derive STATE.md body structure from canonical sources (frontmatter + .planning/phases/ disk scan). Reconciles ## Current Position prose with frontmatter, drops orphaned rows from the **By Phase:** table, clears template-placeholder field values, and de-duplicates ## Session Continuity Archive blocks down to the 3 most-recent entries. Every mutation is recorded in a structured ## Rebuild Log audit section appended to STATE.md (ADR-1817 §3).
Heavier and manual counterpart to the lightweight, auto-triggered state sync. The two compose non-overlappingly: sync patches three frontmatter fields; rebuild reconciles body structure. Per ADR-1817 §4, rebuild is idempotent — running it twice on a clean file produces no change.
| Flag | Description |
|---|---|
--dry-run |
Compute the rebuild and emit a structured preview, write nothing |
--verbose |
Tee the audit-log entries to stderr in addition to writing them to STATE.md |
Prerequisites: .planning/STATE.md exists
Produces: Reconciled STATE.md with a ## Rebuild Log audit entry (only when drift was reconciled)
node gsd-tools.cjs state rebuild # Reconcile body structure
node gsd-tools.cjs state rebuild --dry-run # Preview the diff without writing
node gsd-tools.cjs state rebuild --verbose # Emit audit-log entries to stderr
state planned-phase
Record state transition after plan-phase completes (Planned/Ready to execute).
| Flag | Description |
|---|---|
--phase N |
Phase number that was planned |
--plans N |
Number of plans generated |
Prerequisites: Phase has been planned
Produces: Updated STATE.md with post-planning state
node gsd-tools.cjs state planned-phase --phase 3 --plans 2
state complete-phase [--phase N]
Mark the current phase as COMPLETE in STATE.md — updates the body Status, Last Activity, and ## Current Position fields. --phase is optional; when omitted, the phase is resolved from STATE.md's Current Phase/Phase fields (frontmatter current_phase preferred, falling back to the body).
Idempotency guard (#3489): if STATE.md's canonical current phase already names a phase distinct from the one being marked complete — including when that phase lives only in frontmatter current_phase, not the body — the command is a no-op (idempotent: true) rather than rolling STATE.md back to the requested phase's moment-of-completion. If the frontmatter cannot be parsed at all, the command refuses outright (Unable to read STATE.md frontmatter; refusing to run complete-phase to avoid a destructive rollback) instead of guessing.
Prerequisites: .planning/STATE.md exists
Produces: Updated STATE.md marking the resolved phase complete, or a no-op when the guard determines the phase was already superseded
node gsd-tools.cjs state complete-phase --phase 3
runtime-identity
Report the package coordinates of the gsd-tools that is executing. Used by the runtime
launcher preamble to confirm a shipped workflow reached this package's tool rather than a
different package that also provides a gsd-tools binary.
Prerequisites: none — it reads no project state and needs no resolvable project root Produces: a JSON identity payload on stdout
node gsd-tools.cjs runtime-identity
{
"packageName": "@opengsd/gsd-core",
"version": "1.12.0"
}
| Field | Type | Value |
|---|---|---|
packageName |
string | Always @opengsd/gsd-core. Baked at build time from package.json, so it survives an installed tree that carries no real package.json. |
version |
string | The installed host version. Falls back to 0.0.0 when neither gsd-core/VERSION nor a runtime-root package.json is readable. |
--raw emits the same payload on a single line.
The payload is additive-only: consumers must ignore unrecognized keys. version is
reported but is not asserted by the launcher check — identity alone determines whether
the check passes, so a 0.0.0 development tree still verifies.
The launcher preamble runs this verb once, immediately after it resolves a tool and before
any workflow verb executes. It matches the --raw output anchored to the start of the
payload — a substring search would accept {"packageName":"get-shit-done-cc","note": "@opengsd/gsd-core"} — and exports the outcome as GSD_IDENTITY_STATUS:
GSD_IDENTITY_STATUS |
Meaning |
|---|---|
ok |
The resolved tool proved it is @opengsd/gsd-core. |
unverified |
It did not. Either a different package, or an @opengsd/gsd-core older than this verb. The preamble prints one line to stderr and continues — the rollout is warn-then-fail. |
The same verb is still useful by hand for answering "which tool am I actually running?".
See Diagnose which gsd-tools is running for using it, and Runtime identity for the rationale.
Community Commands
Community Hooks
Optional git and session hooks gated behind hooks.community: true in .planning/config.json. All are no-ops unless explicitly enabled.
| Hook | Purpose |
|---|---|
gsd-validate-commit.sh |
Enforce Conventional Commits format on git commit messages |
gsd-session-state.sh |
Track session state transitions |
gsd-phase-boundary.sh |
Enforce phase boundary checks |
Enable with:
{ "hooks": { "community": true } }
gsd-validate-commit.sh accepts the 10 Conventional Commits types (feat, fix, docs, style, refactor, perf, test, build, ci, chore) by default. Extend the list with hooks.commit_types — an array of extra type names, added to (never replacing) the built-in ten:
{ "hooks": { "community": true, "commit_types": ["enhance", "enh", "revert"] } }
Each entry must match ^[a-z][a-z0-9-]*$ (lowercase letters, digits, hyphens); non-conforming or non-string entries are dropped rather than blocking the hook.
Community Invite
To join the GSD Discord community, visit the link in the GSD README or run /gsd-help and follow the Discord link shown there.
Contributing: Skill Description Standards
Skill descriptions (the description: field in each commands/gsd/*.md frontmatter) are
injected into every session's system prompt. To keep per-session overhead low, descriptions
must be ≤ 100 chars and must not duplicate flag documentation already in argument-hint:.
A lint gate enforces the budget:
npm run lint:descriptions
The check is also run as part of npm test via tests/skill-frontmatter-contract.test.cjs.
Capability commands (third-party)
A capability can ship its own command family by declaring commands: [{ family, module, router }] in its capability.json (ADR-1244 D7). Once the capability is active, running gsd-tools <family> … (equivalently the gsd <family> wrapper) dispatches to the capability's router. The first-party families graphify, intel, and audit-uat/audit-open use exactly this registry-driven seam.
For a project-scoped third-party capability, "active" is decided by the user-owned consent store (${GSD_HOME:-~}/.gsd/consent.json), not by the in-repo ledger. Since #1459, the authoritative project-scope activation gate is a consent record on this machine, bound to the project root and the exact bundle content; a forged or cloned in-repo .gsd-capabilities.json ledger that looks committed activates nothing on its own — see The capability trust model. A global capability (under your own home) is trusted without a per-project record.
Command dispatch is then gated twice. Beyond that primary activation gate, the router module is loaded only from the capability's own install root (a bare .cjs basename, traversal- and symlink-confined), and dispatch additionally requires a committed (non-_pending) entry in the per-runtime .gsd-capabilities.json ledger — a secondary signal that the install actually completed. A capability that is merely present on disk without a committed ledger entry is not command-dispatchable; a project-scoped one is not even active without the consent record. (A project ledger lives in the repo tree and is only as trustworthy as the repository — which is precisely why the consent store, not the ledger, is the project-scope activation gate.)